4 Viral Beauty Moments Of Erica Fernandes That Broke The Internet – IWMBuzz

Checkout Erica Fernandess beauty moments

Erica Fernandes, who is currently seen as Prerna in Star Plus show Kasautii Zindagii Kayis the most stylish actress we have in the television industry.

The actress makes style statements and emerges as a head turner at every occasion. From giving us style lessons on how to rock all one-piece outfits to nailing winter street fashion with elegance and charm, she has been on a roll.

Her beauty and personality have made her the most loved actress in the industry and among her fans. This multi-talented actress keeps on sharing videos related to makeup and hair on her YouTube channel and has garnered more than one million subscribers. She is followed most for the simple and elegant make-up tutorials she shares.

Also Read: Check Out! Kasautii Zindagii Kay Fame Erica Fernandes Struggle Story And Television Career

As per reports, Erica drinks lots of water to keep her skin hydrated. She also believes that whatever you eat reflects on your face. So, she includes a lot of fruits, green veggies and foods rich in proteins in her diet.

Erica never fails to remove her makeup before she goes to sleep. In one of her videos, Erica revealed that she uses a home-made mask to keep her skin healthy and glowing.

We bring you her top beauty moments that broke the internet

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4 Viral Beauty Moments Of Erica Fernandes That Broke The Internet - IWMBuzz

The 20 best rock albums of 1977 – Louder

In 1977 the first Star Wars movie premiered, Elvis died, and Jimmy Carter became US President.

Elsewhere, the The Atari 2600 was launched in North America, football superstar Pele played his final professional game, and the Soviet Union launched the Soyuz 24 space mission.

In music, Patti Smith fell offstage while supporting Bob Seger in Tampa, Florida, legendary New York disco Studio 54 opened, Michael Schenker disappeared after a UFO show at The Roundhouse in London, Marc Bolan was killed in a car accident in North London, and a Gallup poll declared America's favourite band to be Kiss.

These are the 20 best albums of 1977.

AC/DC - Let There Be Rock

Building upon their ferocious debut, AC/DC proved that their riff-tastic, swaggeringly sexy (sexist?) songs werent a fluke.

The title track, Bad Boy Boogie and Hell Aint A Bad Place To Be show off Angus and Malcolm Youngs way with a bluesy riff, but its the closing song that is quintessential DC. Yes, this is the album that gave us the hilarious tale of Whole Lotta Rosie.View Deal

David Bowie - Low

Teaming up with Brian Eno, David Bowie released two albums in 1977 (the other was Heroes), and Low was the moody, atmospheric meisterwork that showed how far the chameleonic songwriter had moved on from his Ziggy Stardust days.

Sound And Vision is the most accessible song of a challenging, but brilliant set.View Deal

Eric Clapton - Slowhand

Despite his prowess as a songwriter, Eric Clapton has always managed to turn around a good cover version. And thats the case on Slowhand as he makes JJ Cales Cocaine his own.

His compositions impress too this is the place where Wonderful Tonight and Lay Down Sally first saw daylight. This is Eric Claptons most accomplished (and varied) solo record.View Deal

The Clash - The Clash

Of the debut albums from the big punk three (Sex Pistols, Clash and Damned), the Pistols brought fierce nihilism, the Damned were the most fun, while The Clash spoke to you about your life.

Joe Strummer snarls with intelligent indignation on Career Opportunities and Janie Jones while Mick Jones provides some surprisingly melodic guitar. An album in love with the rocknroll woah.View Deal

Elvis Costello - My Aim Is True

Marrying a punk simplicity with a dash of pop rock, Declan MacManus announced Elvis Costellos arrival with his snarky debut.

The brittle but brilliant (and enduring) ballad Alison is in direct contrast to the garage rocknroll of the first three tracks, highlighting Costellos versatile way with a tune. Trivia fans should also note that Huey Lewiss early band Clover provided some of the instrumentation.View Deal

The Damned - Damned Damned Damned

UK punks first album, The Damneds raw debut helped set the blueprint for punk rock, and featured guitarist Brian James firmly to the fore in songwriting terms.

Assaulting your ears with Neat Neat Neats pulsating bassline (courtesy of Captain Sensible), it never lets up for a second, while seventh track New Rose is an undisputed classic, irrespective of genre.View Deal

Ian Dury - New Boots And Panties!!

After having spent time honing his chops in the London pubs, New Boots And Panties!! saw the larger than life Ian Dury step out on his own.

Distinctly British, and distinctly brilliant check out the lyrics of Billericay Dickie and Wake Up And Make Love With Me for conclusive proof its also the album that included Blockheads, the song that gave his new backing band their name.View Deal

Electric Light Orchestra - Out Of The Blue

Jeff Lynnes ELO had come along way since it formed from the ashes of The Move. By the time of this double-album, Electric Light Orchestras massive sound incorporated orchestral arrangements and multi-layered harmonies with perfect pop melodies, the antithesis of the punk uprising of the time.

Wild West Hero, Mr Blue Sky and Turn To Stone became three of the biggest hits they ever had.View Deal

Fleetwood Mac - Rumours

If ever proof was needed that friction, heartbreak, drug use and chaos can produce great art, then Fleetwood Macs Rumours has to be Exhibit A.

Somehow the likes of The Chain, Dont Stop, Never Going Back Again and Go Your Own Way still sound as great today as they did the first time around.View Deal

Foreigner - Foreigner

First blasting into our consciousness via the slick Feels Like The First Time, Foreigner stamped their intelligent, massive-sounding radio rock all over their debut album.

Cold As Ice is an exercise in brilliant melodic rock, while Long, Long Way From Home characterises where guitarist Mick Jones and vocalist Lou Gramm would take their band in the years that followed.View Deal

Peter Gabriel - Peter Gabriel

Stepping out of the shadows of a hugely successful band to go it alone is a brave step. And its one that former Genesis frontman Peter Gabriel made with ease and panache.

His first album free from Phil Collins et al saw him lose the long-winded complexity of his prog roots in favour of shorter, sharper, more knowing songs, such as Solsbury Hill.View Deal

Heart - Little Queen

Casting off their little Led Zeppelin tag, sisters Ann (vocals) and Nancy Wilson (guitar) built upon the promise of Hearts debut album Dreamboat Annie with their second release.

Fusing bludgeoning rock (the relentless rifferama of Barracuda) with gentle mandolin-led folk (Dream Of The Archer, Love Alive) to great effect, the band proved that they had one of rocks finest vocalists in their line-up.View Deal

Pink Floyd - Animals

Yup. Its the one with the pig. Pink Floyds follow-up to the seminal Wish You Were Here was a very different beast to its predecessor. Its a meagre five tracks long, but Roger Waters songwriting is reaching its most complex, experimental and demanding.

Despite only sharing one composer credit (on the whopping 17-minute long Dogs), David Gilmours stylish guitar sets the tone of this nihilistic, disturbing work.View Deal

Iggy Pop - Lust For Life

Rejuvenated for the masses thanks to the use of its title track in Danny Boyles film adaptation of Trainspotting, Iggy Pop's second release of 1977 cemented his reputation as a founding father of US punk.

Teaming up with David Bowie (who produced and cowrote), Pop proved through the likes of Lust For Life, Success and The Passenger that he was now a bona fide solo star who could survive without his Stooges.View Deal

Rush - A Farewell To Kings

A Farewell To Kings gave Rush one of the biggest hits of their career in the shape of Closer To The Heart a song that is one of only a scant handful of Rush tracks which clock in below the three-minute mark.

But such brevity is not indicative of the album as a whole with the heavily synth-led Xanadu and closer Cygnus X-1 (which also serves as a conceptual prelude to 1978s Hemispheres album) taking centre stage.View Deal

The Sex Pistols - Never Mind The Bollocks Heres The Sex Pistols

12 tracks that changed the world, this was the album that turned rocknroll on its head. Anarchic, chaotic and rebellious in both musical and lyrical terms, the world had never heard anything like Johnny Rottens sarky, disparaging sneer underscored by Steve Jones and Paul Cooks ramshackle, breakneck cacophony before.

God Save The Queen, Anarchy In The UK, Pretty Vacant, Bodies its a hard rock classic.View Deal

The Stranglers - No More Heroes

Following up their well-received Rattus Norvegicus released earlier in the year, Hugh Cornwell and his Stranglers perfected their surreal art punk take on the world.

Lyrically theres some near-the-knuckle material lurking on this album (I Feel Like A Wog), but some great tunes too: Dagenham Dave, Something Better Change and the title track.View Deal

Television - Marquee Moon

Art rocks finest hour Tom Verlaine and Richard Lloyds guitar interaction is at the heart of this beautiful LP.

Marquee Moon (the song) with its extraordinary instrumental passages shows that there was a lot more to 70s New York new wave than Blondies pop rock excursionsView Deal

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The 20 best rock albums of 1977 - Louder

‘High Fidelity’ Season 2 Would Have Focused on Cherise – Decider

HulusHigh Fidelitycancellation stings quite a bit, but its made even worse by the fact that DaVine Joy Randolphs hilarious record store employee Cherise was set to ground the second season. In a new interview with the Los Angeles Times, star Kingsley Ben-Adir revealed thatHigh FidelitySeason 2 was supposed to be Cherise-focused, but Hulu canceled the comedy before it had the opportunity to fully tell her story. What could have been!

When asked about Hulu canceling its High Fidelity reboot, an announcement that shocked fans and critics alike, star Ben-Adir was clear that he is not happy about the decision, particularly because he knows the writers had something special planned for the second season. Annoyingly, Season 2 was really gonna be a Cherise-focused season, he told the LA Times. [DaVine Joy Randolph] was gonna become the lead of the show, and the story was leaning toward being about where shed come from, her heartbreaks and her family background. And they stopped it just as that was about to happen.

Randolphs character spent much of the first season propping up Kravitzs Rob, but in the latter half, she began to branch out on her own. At the end of the season, Cherise puts herself out there as an artist with a performance of Stevie Wonders I Believe (When I Fall In Love), but viewers are left in the dark about her future. Will the self proclaimed musical visionary finally be recognized for her talents?

Ben-Adir added that Kravitz would have brought something unique to a potential second season, as the star was intimately involved with every aspect of production. From a selfish point of view, I think its a shame because I had such a good time working with Zo [Kravitz], said the actor, who played Robs ex-boyfriend Mac. From what I read when I first went for it, she elevated it and really brought it to life as an executive producer. She was involved in everything: the tweaks, the rewrites, the edit, the detail, the reshoots, the rock, all of that stuff, thats all Zo, a super-talented person in all areas of storytelling, doing her thing.

I also enjoyed building that relationship with Zo so much, Ben-Adir continued. Its a little bit heartbreaking because we were playing this Black couple onscreen but no one goes to jail, and no ones brother or dad is in prison. We were just two Black people in love, and we never spoke about that fact. Its important for all people to see Black people represented in a way where its just like, Were just normal, we just do regular things too.'

Read Kingsley Ben-Adirs entire interview with the Los Angeles Times here.

Where to streamHigh Fidelity

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'High Fidelity' Season 2 Would Have Focused on Cherise - Decider

Plotting the path through the energy transition – Hydrocarbon Engineering

The current COVID-19 crisis is a game changer for everyone and that includes the energy sector. Moving forwards, we can never talk about business as usual; we are not going to go back to what we had six months ago, the world is a different place. The economy is different, people's perception of health is different. The virus is going to be with us for quite a while to come and people will behave differently.

This will clearly influence the pace and manner of the energy transition. All the available fuels need to reassess their position, and this provides Liquefied Petroleum Gas (LPG) an opportunity to flourish. As a portable, low-emissions fuel it can have a big impact on both air quality and carbon emissions and is readily available at a reasonable price.

Last year witnessed a surge in climate awareness, with protests around the world reflecting the growing concern around climate change, backed up by stark warnings from scientific advisors. Across Europe, politicians are reacting with the UK and France signing historic net zero emission targets into law and other European countries and the EU itself moving in this direction. It is not just government, but city leaders reacting too, not just to greenhouse gases (GHG) but to air pollution with major cities from Madrid to Amsterdam and Paris developing low-emission zones to improve air quality.

Air quality is one of the most pressing public health concerns of the 21st century and is a significant driver of energy policy. The increased focus on air pollution seen in recent years can be attributed to heightened awareness and greater public pressure on political bodies to tackle this urgent, often fatal issue. Last year, the World Health Organization (WHO) statistics revealed that not only are over 90% of the worlds population breathing air that exceeds WHO recommended limits, but an estimated 7 million deaths a year can be attributed to that pollution. Of these deaths, around 90% occur in low- and middle-income countries.

Despite the ambition, so much of our economic activity and productivity around the globe still depends on the availability and exploitation of reasonably priced energy. Whilst moving away from fossil fuels is inevitable, the pace and direction of this change is a significant challenge for organisations operating at the sharp end of the economy. It could of course also provide opportunity.

Progressing from where we are now to where we want to be is going to be a journey, and the speed that we travel along that route will determine the fuel strategy. Whatever way you look at it, natural gas and LPG should have a contribution to the move to a low carbon world in a practical and pragmatic manner; for the energy transition must be a pragmatic one which does not leave people behind. It cannot be a strategy where if you are living in the cities, you have access to green, renewable electricity, but if you live in rural areas there is no alternative other than to use coal, kerosene, diesel or biomass. There must be an acceptance of the role for cleaner fossil fuels.

The energy transition means moving from one state to a new state and I think it is true and fair to say that whatever appliances we use, whether it is a boiler, car or a stove, they will be different to the ones we use now. How long that transition will take is not yet apparent, but it can be accelerated by switching to gas. Take a boiler. Moving from an oil-fired boiler to a gas-fired boiler will deliver lower emissions for heating. That can be achieved at a far lower cost than switching to a boiler fuelled by electricity or a heat pump system. Here there is a trade-off but, in the post COVID-19 economy, where governments will critically assess the cost benefit of the emissions reductions that they are putting in place, a pragmatic switch to LPG is an ideal option.

A quick win by moving to gas from oil is a practical step that we should be taking in the short term to improve our climate and our air quality, as part of a transition to a future world that should be zero carbon. Given the current global financial situation, the transition may take a little bit longer than we were hoping for and given the level of public debt, it must be cost effective.

There are multiple strands to LPGs contribution to the decarbonisation agenda including domestic use, transportation, process heating, industry and agriculture. Many studies show the extensive morbidity and mortality associated with poor air quality and as populations and car usage grow, this is only going to be exacerbated. The busier that towns and cities become, irrespective of infrastructural changes and road building, congestion will worsen. Whilst many countries are pursuing an electrification pathway for domestic needs and consumer vehicles, the infrastructural support required, and battery restrictions associated with EVs render them largely inappropriate for heavy and medium goods vehicles. LPG offers a lower particulate matter and GHG alternative to petrol and diesel that is well suited to such vehicle types and elicits both environmental and financial benefits.

As well as being essential to the effective decarbonisation of transportation fleets, LPG can also play a role within the domestic sphere, offering a lower carbon fuel for household heating and cooking. This is particularly true of off-grid households often in rural areas which may be reliant on costly electrical heating, highly polluting oil or biomass boilers.

Another area of opportunity lies in industry, where there is an urgent need to decarbonise. In 2017, the industrial and commercial sectors accounted for 44% of total energy consumption in the US and produced over 5000 million t of CO2 (MtC02). Tackling the emissions produced by these sectors would make substantial inroads in reducing emissions and, without a shift in the types of fuels industry and commerce are utilising, it is unlikely that any carbon or GHG reduction targets will be met.

LPG has traditionally been a co-product of the oil and gas industry and a large proportion of the product still comes from oil and gas sector with over 62% at present coming from natural gas processing and production. As we look to the future there is a third or perhaps even a fourth area of LPG production. In fact, in the future it will probably be inaccurate to call it LPG, because LPG is a petroleum product. We believe that the next generation of propane and butane, which are the gases that make up LPG, can come from renewable and bio sources, such as waste oils, animal fats or cellulose sources, such as wood.

This bioLPG will make up a large proportion of our future demand. Significant volumes of bioLPG can be produced as a by-product of fuels such as bio-kerosene or biodiesel When we look at the production forecasts of biodiesel and, in the future, bio-kerosene, we are confident that there will be a significant future supply of bioLPG.

BioLPG production has been growing rapidly over recent years. Currently the fuel is predominantly produced from hydrotreated bio-oils in refineries. However, bioLPG can be produced in several ways and through numerous processes, such as gasification and pyrolysis - which are already proven technologies, and from various feedstocks including agricultural residues and municipal waste.

The final strand of this approach which is beyond a biofuel is renewable LPG or renewable propane. An example of this would be to use green, renewable hydrogen combined with sequestered CO2 from industrial flue gas, or even directly from the air. With this we can synthesise short chain hydrocarbons including propane. This is a truly circular solution. When you burn it, you recapture the CO2 and create new sources of fuel. This is only in the R&D stage now and at present the cost of renewable green hydrogen is high, but perhaps in the future as we move towards a green hydrogen-based economy it will be increasingly viable.

As the global community intensifies its desire to combat the effects of climate change and seek ways to reduce GHG emissions, LPG can offer significant near-term solutions. LPG is not only among the most attractive options for reducing GHG emissions, it is abundantly available today in many parts of the world through existing distribution channels. In the post COVID-19 world rather than the dash back to oil, which many people foresee, we need to think about gas as an intermediate option. Switching to LPG can help to immediately improve air quality and reduce GHG emissions in many applications and parts of the world. When combined with other environmental cost, and performance advantages, LPG is an ideal clean energy for a low-carbon world.

Written by James Rockall, CEO and Managing Director, WLPGA.

Read the article online at: https://www.hydrocarbonengineering.com/special-reports/27082020/plotting-the-path-through-the-energy-transition/

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Plotting the path through the energy transition - Hydrocarbon Engineering

JIMI HENDRIX And JOHN BONHAM – Two New Books Celebrate The Lives And Music Of Late Rock Legends – bravewords.com

Sadly, this September marks 50 years since the passing of Jimi Hendrix and 40 years since the passing of John Bonham. To celebrate both legendary and influential artists, respected author/journalist Greg Prato has assembled two new books, Avatar Of The Electric Guitar: The Genius Of Jimi Hendrix and Bonzo: 30 Rock Drummers Remember The Legendary John Bonham. Each book is priced at $19.99 for the paperback and $9.99 for the Kindle version:

It is widely believed that Jimi Hendrix was one of the greatest rock guitarists of all time...and quite possibly, THE greatest. All you have to do is compare what rock guitar sounded like before Jimi burst on the scene in the late 60s, and what it sounded like after. And in addition to trailblazing new sounds and approaches, his influence reached beyond just the guitar community he quickly became the literal poster child for the psychedelic rock movement, due to his unique fashion, song lyrics, and a now-iconic performance at Woodstock. But sadly, Jimis story also remains one of rocks most tragic dying at the age of 27 on September 18, 1970 (just as he was playing some of the biggest concerts of his career and entering a new musical phase). To mark 50 years since his passing, 'Avatar Of The Electric Guitar: The Genius Of Jimi Hendrix' has been assembled comprised of interviews with renowned guitarists (including Kirk Hammett, Alex Lifeson, Steve Vai, John Petrucci, and Kim Thayil, among others), discussing what made Jimi so special, and ultimately, a legend.

Few rock drummers remain as universally praised as Led Zeppelins John Bonham. Listen to any Zeppelin album, and you will hear a virtual showcase on expert rock drumming while never getting in the way of the groups other members and their contributions, singer Robert Plant, guitarist Jimmy Page, and bassist John Paul Jones. But sadly, one of rocks all-time greats died tragically young he was only 32 years old resulting in the end of one of rocks most celebrated bands. To mark 40 years since his passing, 'Bonzo: 30 Rock Drummers Remember the Legendary John Bonham' has been assembled comprised of interviews with some of the top drummers of rock (including Kenny Aronoff, Mike Portnoy, John Dolmayan, Brian Tichy, and Steve Gorman, among others), discussing what made Bonham such a special and unforgettable drummer.

Greg Prato is a writer and journalist from New York, whose writing has appeared via such outlets as Songfacts, Vintage Guitar Magazine, and BraveWords. He is also the author of several popular books, including Take It Off: Kiss Truly Unmasked, Touched By Magic: The Tommy Bolin Story, and A Rockin' Rollin' Man: Bon Scott Remembered, among many others. And you may have even heard him on one of his many radio or TV appearances, which include interviews on The Howard Stern Wrap-Up Show, Eddie Trunk Live, and Feedback with Nik Carter and Lori Majewski. Avatar Of The Electric Guitar and Bonzo are his 31st and 32nd books overall.

Excerpts here.

Order Avatar Of The Electric Guitar: The Genius Of Jimi Hendrix and Bonzo: 30 Rock Drummers Remember The Legendary John Bonham.

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JIMI HENDRIX And JOHN BONHAM - Two New Books Celebrate The Lives And Music Of Late Rock Legends - bravewords.com

The HoopsHype Weekly: Ranking the Top 10 players in the 2020 NBA playoffs so far – Hoops Hype

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TOP 10 PLAYOFF PERFORMERS:With the playoffs set to resume later today, we decided to rank the Top 10 performers so far in the 2019-20 postseason. Statistics and team results were taken into account. Lets get to it.

10. Jimmy Butler: Hes not even Miamis leading scorer in the playoffs (that distinction would belong to Goran Dragic), but theres no doubt Butler was instrumental in the Heats first-round sweep of the Indiana Pacers. Not only did the All-Star swingman post a 20/5/4 stat line in four games, his outstanding defense, particularly on the productiveTJ Warren, helped Miami cruise to a series victory.

9. Anthony Davis: The Lakers big man leads all playoff participants in average plus/minus at +16.0, and has absolutely dominated Portlands frontcourt through four games, averaging 26.5 points, 9.5 rebounds and 2.0 blocks. If he keeps up that level of production, L.A. will be awfully hard to stop on theirhunt for No. 17.

8. Rudy Gobert: Averaging 17.6 points (on 69.8 percent shooting, no less), 10.2 rebounds and 1.6 blocks, Gobert has been a big reason why the Jazz currently have a 3-2 series lead over Denver. In particular, him keepingfellow star big man Nikola Jokic somewhat in check in their matchup has been huge for Utah. Jokic has an average -4.6 plus/minus in the series.

7. LeBron James: After a slow start to his time in the bubble, LeBron has been spectacular in the postseason, especially after Game 1 of L.A.s matchup against Portland. Overall for the playoffs, James is averaging a 25/10/10 triple-double while shooting nearly 43 percent from beyond the arc, playing the role of creator and still doing his fair share of scoring for the Lakers wonderfully.

6. Jayson Tatum: The No. 9 leading scorer in the postseason at 27 points per game, Tatum took full advantage of Philadelphia being without Ben Simmons and absolutely dominated whoever matched up against him for the Sixers.Bostons 4-0 sweep of Philadelphia was in large part thanks to Tatums excellence in the series.

5. Giannis Antetokounmpo: It shouldnt come as a surprise, but Antetokounmpo, named this seasons Defensive Player of the Year this week, has seen his regular-season greatnesscarry over into the playoffs. The Greek Freak is averaging 31.3 points, 15.8 rebounds and 6.8 assists against Orlando, obscene marks that should worry every team remaining in Milwaukees path.

4. Luka Doncic: Despite a couple of quiet outings against the Clippers, Doncic is still posting a 30/10/9 stat line in the postseason, including a 43-point, 17-rebound, 13-assist performance, which featureda game-winner that will be on highlight reels for the rest of his career.

3. Jamal Murray: The Nuggets guard has had All-Star potential since being drafted by Denver, but he hasnt quite seemed to putit all together until now. Murrays ascension these playoffs has been nothing short of spectacular to behold and the duelhes been having with the No. 1 player on this list is basketball entertainment at its finest. Through five games, Murray is averaging nearly 31 points while shooting 55.7 percent from the floor and 52.4 percent from deep. Oh, and hes turned the ball over just seven times over those five games, an impressivefeat considering the ball-handling duties he has.

2. Kawhi Leonard: Paul George may be going back and forth between being Playoff P and Pandemic P for the Clippers, but his teammate, Leonard, has been steady as a rock all playoffs long. Leonard is averaging 32.8 points in the postseason (the second-best mark among all players) to go along with 9.4 rebounds, 4.8 assists and 1.8 steals. With the level hes been performing at, Leonard is more than capable of leading the Clippers all the way to a title in his first year with the team.

1. Donovan Mitchell: It was a pretty easy decision choosing the first-place finisher on this list, as Mitchell has been outrageouslygood since the playoffs began, dropping at least 30 points four times in five games and at least 50 points twice, including a 57-point performance, the third-highest postseason scoring total in league history. Like Murray, it appears Mitchell has used the 2019-20 playoffs to go from being merely a good player into a great one, and itll be fascinating to see what hes able to do if Utah advances to Round 2 over the weekend.

NBA PLAYERS BOYCOTT:Our own Michael Scotto takes you behind the scenes of what went into the Bucks decision to boycott their game and the ramifications of it. The boycott (really more of a strike) was a moment that will be talked about for years to come.

ANOTHER TRAGEDY:In the year that just wont stop, NBA players react to the heartbreaking news about the tragic passing of Chadwick Boseman, most famous for his role as TChalla in Black Panther.

Rest in peace, Chadwick, and thank you for sharing your gifts with all of us.

BRODIE RETURNS:Good news for Houston, as Russell Westbrook is ready to return from the quad injury that kept him out of the first four games of the playoffs.

KIDD TO PHILLY?Lakers assistant coach Jason Kidd is reportedly quite interested in Philadelphias head coaching vacancy.

That could be disastrous considering his strong personality and the ones already in the Sixers locker room, but it could also be interesting to see what Kidd, a non-shooting lead guard himself back in the day, might be able to do with Ben Simmons.

SHAKEUP COMING?Speaking of Philadelphia, Michael Scottotalked to coaches and league executives to find out what they think the Sixers should do with Ben Simmons and Joel Embiid. Trade one? Trade both? Trade neither? Tough decisions ahead for Elton Brand and Co.

HIGH PRAISE:Kevin Durant recently made very interesting comments about burgeoning star Luka Doncic, calling the young phenom a (expletive) problemwhile discussing how refined his game is.

STAT BLAST:LeBron James has scored more points in the playoffs than a lot of memorable players scored in their entire regular-season careers. Dont believe us? Just look through some of the names here.

MAMBA DAY:In celebration of Mamba Day early this past week, we put together this awesome gallery of Kobe Bryant with every trophy he won in his career, including the Oscar in 2018. We miss you, Mamba.

COVID-19:Pelicans owner Gayle Benson hastested positive for coronavirus, though her symptoms reportedly havent been bad enough to require hospitalization. Heres hoping she gets better soon.

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The HoopsHype Weekly: Ranking the Top 10 players in the 2020 NBA playoffs so far - Hoops Hype

Opinion | We’ve come a long way in education since early 1900s in Parry Sound – parrysound.com

Students, teachers and parents are preparing to go back to school this September or, in some families, preparing to learn at home. Whichever way you are learning or teaching this year, it will sure be a little different than the year before. Education is always changing, so we wanted to feature a few of the historical education books in our collection and see how far weve come since the early 1900s.

'The Golden Rule: A Graded System of Moral Instruction' was a teachers manual used to instruct schoolchildrens behavioural skills and teach them how to be a respectful addition to society. This version of the series was printed in 1915, and was authorized by the Ontario Ministry of Education. The four main themes of learning were the intellectual life, bodily life, social life and economic life. The topics dive deeper into discussions such as self-reliance, cleanliness of the body and courtesy in public through speech and actions. The purpose of 'The Golden Rule' books was to prepare children for life after school.

'The Canadian Readers: An Education Series' was also an important part of learning. Levelled books were created and printed for various age groups; level one intended for grade one students, level two for grade two students and so forth. Each book contains poems and short stories that are the expected level for the grade.

The stories within the book is different than what we would encourage children to read today. Poetry, nature and food is emphasized throughout the book. It was important for a child to learn to read and write food names and ingredients with the hope to learn to cook, go grocery shopping and read a recipe. There are many short passages on food and how it was made. For example: Bread is made of flour; and flour is made from wheat. When the wheat is ripe it is thrashed, and then it is ground down into flour by the miller. Although not a thrilling page turner, 'The Canadian Readers' did the trick and helped children learn to read.

The Museum on Tower Hill is currently open by appointment for visitors. Please visit our website http://www.museumontowerhill.com for more information on how to explore the museum!

Karen Albrecht is the communications officer for the Museum on Tower Hill. Her column, 'In Our Collection', appears monthly. She can be reached at communications@museumontowerhill.com.

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Opinion | We've come a long way in education since early 1900s in Parry Sound - parrysound.com

Newport sailing community jumps into action after squall sinks boats in bay – The Providence Journal

NEWPORT A squall just west of Goat Island on Tuesday night could have ended in tragedy. But members of the boating community acted quickly.

Newport Harbormaster Timothy Mills said the squall affected a larger swath of Newport waters, but was particularly intense near Goat Island, where sailboats were racing.

People on harbor tours and fellow racers pitched in to help when boaters were in distress, said Brad Read, executive director of Sail Newport.

"It was a team effort by many, many in the Newport community who sprang into action," Read said. "People just dropped what they were doing and saw that there was going to be a problem out there."

Mills said a 22-foot Ensign was swamped in the squall and towed to Sail Newport by staff. "They did a really great job," he said of the Sail Newport staff.

An Alerion Express 28 "was just raised [Thursday] morning. It completely sunk," Mills said. An S boat that had sunk had not been raised yet as of Thursday, and Mills said he was still waiting to hear of the salvage plan.

The squall, a high-intensity wind that blows for a short period, was reported to have escalated from five to 60 knots in about 30 seconds, Mills said.

No injuries were reported.

The wind picked up so quickly that the sailors "didnt have time to reduce their sail," Mills explained. "Didnt have time to prepare."

Read said he was proud of the Sail Newport staff on the water and their efforts to assist; he mentioned Ian Maccini, Peter Cronin and Becca Read his daughter.

"Its a tight-knit group," Mills said of the boating community. "You go to another mariners aid, no matter what thats the golden rule."

ldamon@newportri.com. Follow Laura on Twitter @LauraDamonNDN

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Newport sailing community jumps into action after squall sinks boats in bay - The Providence Journal

On the deafening sound of silence that blinds us – Oherald

03 Sep 2020 | 05:03am IST

Victor Ferrao

Silence has become golden to most of us. The global pandemic has increased its decimals. Today silence has become lauder and is visible. Unfortunately, it is making us deaf and blind. Our Parliament has fallen silent. Our legislative assemblies are cut short. Even the Supreme Court seems to have preferred silence and appeared to have silenced dissent as we seem to see in the contempt case of activist advocate Prashant Bhushan. Silence has become an order of the day when it came to public policies.The New Education Policy (NEP) was not debated in the Parliament but got approved in silence of a cabinet meeting of the Modi Government.

The New Draft of environmental impact assessment (EIA) policy that apparently seeks to silence all oppositions has opened doors to projects that may be otherwise deemed dubious and ecologically disastrous. It even has made it possible to approve already running projects that are on the slippery slope of environmental pollution without proper safeguards through what is called post-facto clearance.

The Draft under our considerations seems to be an attempt to even silence nature. This seems to become clear when one looks at a list of projects exempted from environment assessment. These include projects that are characterised as strategic by the Government. Others that are listed there are inland waterways and national highway projects. Even construction projects up to one lakh fifty thousand square meters are exempted from environmental assessment. But can nature be silenced? Will it not hit back with sound and fury? But for now, silence seems to be a preferred commodity. It is our xanti and peace. It is not just silence but a desire to silence all resistance has become a golden rule. Environmental violations cannot be reported by the citizens anymore. They can only be reported by the project proponent or government representatives. A sort of self-regulation by the project proponents seems to be brought in by taking away the right of citizens to dissent. It even cut down the current thirty days time frame for public consultation to twenty days showing that silencing the citizen is deemed necessary to what masquerades as progress and development.

The culture of silence has enveloped us. It has made it difficult to discern and differentiate between strong leadership and dictatorial leadership or declared emergency and undeclared emergency. Silenced and non-participative democracy has become the new political reality. Our MPs speak very less in parliament. There are no debates there. Law are passed in a hurry without discussion. Democracy has become a silent place. Our citizens are massified into a motley crowds and we have begun a war of silencing each other by hurling charges that often deem and demonise a victim to a villain-hood of an anti-national. These attempts to silence the demonised other has even brought out the violent best in us. Riots, hate-speeches, and lynchings also underline the powerful way we like to speak the language of silencing the demonized other. Covid-19 has also brought about the silent deaths of several Indians. We continue to be a silent crowd that is insensitive to the plight of the migrants and the poor. Our voices are muzzled and we can no longer speak for the victims of suffering and injustice. Culture of silence has put our ethics of care as well as ethics of justice in the oblivion of darkness. Silence conceals and hides the fact that what masks as our interest is actually our self-destruction. It has provided cover to the powers that be. We seem to have opted for political quietism leaving our life, country and future in the hands of a one who is designed and projected as a strong leader. We have chosen uneasy silence that at best enjoys watching the political drama at play. The politics of exclusion and domination as well as the economics of handing over the resources of the people to big corporates do not agitate us. We have to come to terms with our silence. Our silence is indeed political. It does speak a political language. But it does not seem to be strategic and religious. A strategic silence is critical. It watches its interest in silence but interrupts it with resistance and dissent when public interest or interest of our people is sacrificed. The culture of silence is born out a politics that masks the interest of an elite minority which preys on the resources of our country.

The religious silence is an empty place. But emptiness is fullness. It is a place of the plenum. We need this silence that will enable us to see how we have filled into our emptiness things like lust, hate, and violence. We have this challenge to be critical of our silence. This silence of the empty place will give us the third eye that has been devoutly celebrated as the third eye of God Shiva of the Hindu tradition. This critical third eye will give us an insight that enables us to understand that politics as well as economics is what we put in the empty space of power. Such a third eye has the power to open our mind and hearts to our reality and the veil that hid us from it will fall away giving us a vision (darsana) about what the culture of silence has done to us and our society. This darsana (vision) of the truth (satya) can break our silence and we will be born-again with a power and voice of dissent. Our lost voice will then start speaking the explosive truth that can break the chains of oppression as well as set us all free from a politics of hate and the culture of silence that afflicts us. Into this freedom and truth, let us all rise in the power of wakefully animated silence.

(The author is Professor of Rachol Seminary.)

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On the deafening sound of silence that blinds us - Oherald

Indy mother killed in hit-and-run crash on Indys east side; police searching for white Hyundai – Fox 59

INDIANAPOLIS Police in Indianapolis continue to search for a driver responsible for killing a 25-year-old woman during an early morning hit-and-run crash.

The deadly crash took place on Indys east side near 30th and post.

Investigators believe Keyona Murphy had been walking in or near the street, arguing with another person who was walking on the sidewalk, when Murphy was struck by an eastbound car that didnt stop.

I think its awful. The whole concept of the value of life is falling, said Chad Temple.

Chad didnt know the victim. Hes a pastor at The Caring Place church near the crash scene.

He says the sidewalk along 30thstreet was built just a few years ago and since then he hasnt noticed any serious traffic dangers until last nights crash.

According to IMPD, so far this year there has now been 11 deadly hit and run accidents. Nine of those have taken place in the last four months.

Last year there were nine deadly crashes on the same date, with 16 total reported by the end of the year.

Chad just wishes more people would follow the golden rule and treat others the way they would want to be treated.

Are there problems in this neighborhood? Oh yeah. It goes beyond the hit and run, but thats an example. Its like the number of shootings we have. People have the mentality that what I need is more important than what you need and thats not the way you should live, said Temple.

Police describe the suspect car as a white Hyundai sedan. Anyone with information on that car is asked to contact Crime Stoppers at 317-262-TIPS.

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Indy mother killed in hit-and-run crash on Indys east side; police searching for white Hyundai - Fox 59

Analysis: UX / UI Will Determine the Success or Failure of Your Next Web Project – IBL News

IBL News | New York

Today, creating memorable and effective user experiences adjusted to the target audience determines ultimately the success or failure of any web enterprise.

Consumers have millions of products to choose from. What separates the excellent from the mediocre comes down from the user experience.

The UX (user experience) design process starts by understanding the psychology of the user. It needs to effectively address the users desire to find the information quickly and convince him or her to come back.

The UI (user interface) layout should be designed to engage the audience, identifying the type of actions the user will take, whether its requesting more information, signing up for a service, or purchasing a product.

Thats when visuals, blocks of content, intuitive navigation, logical structure, call to action buttons, and other interactions will all come together.

UX and UI designers will start by keeping sight of businesses branding, marketing goals, and corporate strategy. They then put themselves in the users shoes, anticipating their motivators and turn-offs. Instead of making assumptions, by conducting user testing, surveys, and research on how people interact, it removes the guesswork and provides a starting point.

Consider also that consumer habits change. A website that left people satisfied two years ago, may now be less effective. Its interesting to check the latest trends in web design.

Tools likeFlowMapp,Stormboard,andWhimsicalcan help construct user flows, determining how a design needs to be structured to later building a wireframe and prototype. Lastly, usability testing is the final step before the project goes live.

The golden rule on UX, UI, and usability processes, is to keep users at the center.

Resource:UX design process: a simple (but complete) guide

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Analysis: UX / UI Will Determine the Success or Failure of Your Next Web Project - IBL News

Sally (Jenne) Keefe | Obituaries – Rutland Herald

Sally (Jenne) Keefe RUTLAND Sally passed away on Tuesday, Aug. 25, 2020, at Dartmouth-Hitchcock Jack Byrne Center, following a brief illness. Sally was born in Burlington, Vermont, on April 13, 1948, the first of five children, to Stuart D. and Betty Jenne. She is survived by her husband of 42 years, Barry Keefe, two children, Kieran Keefe and Johanna Keefe, and grandson Mason Keefe, all of Rutland, Vermont. She is also survived by her brothers, Peter Jenne (Denise) of Proctor and David Jenne (Lynn) of West Rutland, and sister Sandy Jenne (Larry) of Union, Washington. Sally grew up in Rutland and graduated from Rutland High School in 1966. She went on to Castleton University where she graduated as the first Fine Arts major, followed by a Master's degree in Art Education from Rhode Island School of Design in Providence. An accomplished artist, working in her classic colored pencil, Sally retired in June after a 52-year teaching career, most recently at Mount St. Joseph Academy. It was essential to her that her students realized the importance of art in ones life. Sally lived by the Golden Rule. She enjoyed her time peacefully producing her art, working in the family vegetable garden, and filling the house with cut flowers she grew for the bees and butterflies. She also enjoyed cooking dishes with ingredients sourced from her garden and presented with her artistic touch. Sally and her husband, Barry, enjoyed many trips to Europe to take in the classical art and architecture, as well as local cuisine. During these trips, Sallys extensive knowledge of art was certainly put to good use. Private service and burial to be held at a later date. Charitable donations to be made in Sallys honor to Mount St. Joseph Art Department, 127 Convent Ave., Rutland, VT 05701 (802) 775-0151.

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Sally (Jenne) Keefe | Obituaries - Rutland Herald

How to use precision medicine to personalize COVID-19 treatment according to the patients genes – TheStreet

Courtesy of Colin Allen, University of Pittsburgh and David Finegold, University of Pittsburgh

Tom Hanks and his wife, Rita Wilson, were among the earliest celebrities to catch the novel coronavirus. In an interview at the beginning of July, Hanks described how differently COVID-19 had affected each of them in March.

My wife lost her sense of taste and smell, she had severe nausea, she had a much higher fever than I did. I just had crippling body aches, he said. I was very fatigued all the time and I couldnt concentrate on anything for more than about 12 minutes.

Why does COVID-19 present such different symptoms or none at all in different people?

Preexisting conditions can only be part of the story. Hanks is over 60 and is a Type 2 diabetic, putting him in a high-risk group. Nevertheless, he survived his brush with the virus with no pneumonia and apparently without any long-lasting effects. Knowing what causes variation in different patients could help physicians tailor their treatments to individual patients an approach known as precision medicine.

In recent years, a gene-centric approach to precision medicine has been promoted as the future of medicine. It underlies the massive effort funded by the U.S. National Institutes of Health to collect over a million DNA samples under the All of Us initiative that began in 2015.

But the imagined future did not include COVID-19. In the rush to find a COVID-19 vaccine and effective therapies, precision medicine has been insignificant. Why is this? And what are its potential contributions?

We are a physician geneticist and a philosopher of science who began a discussion about the promise and potential pitfalls of precision medicine before the arrival of COVID-19. If precision medicine is the future of medicine, then its application to pandemics generally, and COVID-19 in particular, may yet prove to be highly significant. But its role so far has been limited. Precision medicine must consider more than just genetics. It requires an integrative omic approach that must collect information from multiple sources beyond just genes and at scales ranging from molecules to society.

Inherited diseases such as sickle cell anemia and Tay-Sachs disease follow a predictable pattern. But such direct genetic causes are perhaps the exception rather than the rule when it comes to health outcomes. Some heritable conditions for instance, psoriasis or the many forms of cancer depend on complex combinations of genes, environmental and social factors whose individual contributions to the disease are difficult to isolate. At best, the presence of certain genes constitutes a risk factor in a population but does not fully determine the outcome for an individual person carrying those genes.

The situation becomes yet more complicated for infectious diseases.

Viruses and bacteria have their own genomes that interact in complex ways with the cells in the people they infect. The genome of SARS-CoV-2 underlying COVID-19 has been extensively sequenced. Its mutations are identified and traced worldwide, helping epidemiologists understand the spread of the virus. However, the interactions between SARS-CoV-2 RNA and human DNA, and the effect on people of the viruss mutations, remain unknown.

Tom Hanks and his wife caught the virus and recovered in a matter of weeks. Presumably each was infected over the course of a few minutes of exposure to another infected person, involving cellular mechanisms that operate on a timescale of milliseconds.

But the drama of their illness, and that of the many victims with far worse outcomes, is taking place in the context of a global pandemic that has already lasted months and may continue for years. People will need to adopt changes in their behavior for weeks or months at a time.

What should a precision medicine approach be in a pandemic? The gene-centric vision of precision medicine encourages people to expect individualized gene-targeted fixes. But, genes, behavior and social groups interact over multiple timescales.

To capture all the data needed for such an approach is beyond possibility in the current crisis. A nuanced approach to the COVID-19 pandemic will depend heavily on imprecise population level public health interventions: mask-wearing, social distancing and working from home. Nevertheless, there is an opportunity to begin gathering the kinds of data that would allow for a more comprehensive precision medicine approach one that is fully aware of the complex interactions between genomes and social behavior.

With unlimited resources, a precision medicine approach would begin by analyzing the genomes of a large group of people already known to be exposed to SARS-CoV-2 yet asymptomatic, along with a similar-sized group with identified risk factors who are dying from the disease or are severely ill.

An early study of this kind by Precisionlife Ltd data mined genetic samples of 976 known COVID-19 cases. Of these, 68 high-risk genes were identified as risk factors for poor COVID-19 outcomes, with 17 of them deemed likely to be good targets for drug developments. But, as with all such statistical approaches, the full spectrum of causes underlying their association with the disease is not something the analysis provides. Other studies of this kind are appearing with increasing frequency, but there is no certainty in such fast-moving areas of science. Disentangling all the relevant factors is a process that will take months to years.

To date, precision medicine has proven better suited to inherited diseases and to diseases such as cancer, involving mutations acquired during a persons lifetime, than to infectious diseases. There are examples where susceptibility to infection can be caused by malfunction of unique genes such as the family of inherited immune disorders known as agammaglobulinemia, but these are few and far between.

Many physicians assume that most diseases involve multiple genes and are thus not amenable to a precision approach. In the absence of the kind of information needed for a multi-omic approach, there is a clear challenge and opportunity for precision medicine here: If it is to be the future of medicine, in order to complement and expand our existing knowledge and approaches, it needs to shift from its gene-centric origins toward a broader view that includes variables like proteins and metabolites. It must consider the relationships between genes and their physical manifestations on scales that range from days to decades, and from molecules to the global society.

Colin Allen, Distinguished Professor of History & Philosophy of Science, University of Pittsburgh and David Finegold, Professor, Department of Human Genetics, Pitt Public Health, University of Pittsburgh

This article is republished from The Conversation under a Creative Commons license. Read the original article.

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How to use precision medicine to personalize COVID-19 treatment according to the patients genes - TheStreet

Meiotic chromosome synapsis depends on multivalent SYCE1-SIX6OS1 interactions that are disrupted in cases of human infertility – Science Advances

Abstract

Meiotic reductional division depends on the synaptonemal complex (SC), a supramolecular protein assembly that mediates homologous chromosomes synapsis and promotes crossover formation. The mammalian SC has eight structural components, including SYCE1, the only central element protein with known causative mutations in human infertility. We combine mouse genetics, cellular, and biochemical studies to reveal that SYCE1 undergoes multivalent interactions with SC component SIX6OS1. The N terminus of SIX6OS1 binds and disrupts SYCE1s core dimeric structure to form a 1:1 complex, while their downstream sequences provide a distinct second interface. These interfaces are separately disrupted by SYCE1 mutations associated with nonobstructive azoospermia and premature ovarian failure (POF), respectively. Mice harboring SYCE1s POF mutation and a targeted deletion within SIX6OS1s N terminus are infertile with failure of chromosome synapsis. We conclude that both SYCE1-SIX6OS1 binding interfaces are essential for SC assembly, thus explaining how SYCE1s reported clinical mutations give rise to human infertility.

Meiotic cell division is defined by a unique and highly dynamic program of events that result in homologous chromosome synapsis, crossover (CO) formation, and subsequent homolog segregation into haploid germ cells (13). Homologous chromosome pairs are established through interhomolog recombination searches from up to 400 induced double-strand breaks (DSBs) per cell (4). Once established, local recombination-mediated alignments are converted into the single continuous synapsis of aligned homologous chromosomes through the zipper-like assembly of the synaptonemal complex (SC) (5). The SCs supramolecular protein structure mediates continuous 100-nm tethering between homologous chromosome axes and provides the necessary three-dimensional framework for crossover formation (2). Following SC disassembly, crossovers provide the sole physical links between homologs at metaphase I, so are essential for ensuring correct homolog segregation in addition to providing genetic diversity (2).

The SC has an iconic and highly conserved tripartite structure that has been observed across meiotically reproducing eukaryotes (6). This consists of lateral elements (LEs) that coat the two homologous chromosome axes and a midline central element (CE), with a series of transverse filaments that bind together these longitudinal electron-dense structures (Fig. 1A) (7). The protein components of the mammalian SC have been identified as transverse filaments protein SYCP1 (Synaptonemal complex protein 1) (8), CE proteins SYCE1, SYCE2, and SYCE3 (Synaptonemal complex central element proteins 1 to 3), SIX6OS1, and TEX12 (Testis-expressed protein 12) (912), and LE proteins SYCP2 and SYCP3 (13, 14). All transverse filament and CE components are essential for SC assembly, and their individual disruption leads to infertility owing to meiotic arrest with failure of DSB repair (10, 11, 1518). In contrast, disruption of LE components produces a sexual dimorphism of male infertility and female subfertility (19, 20), with SYCP3 deficiency in females promoting germ cell aneuploidy and embryonic death (21).

(A) Schematic of the SC demonstrating its tripartite structure of two chromosome-bound LEs and a midline CE. Synapsis is achieved through N-terminal head-to-head assembly of SYCP1 molecules, which are bound via their C termini to meiotic chromosomes. SYCP1 head-to-head assembly is structurally supported within the CE by SYCE3 (red), an SYCE1-SIX6OS1 complex (yellow), and SYCE2-TEX12 fibrous assemblies (green). (B) Human SYCE1 (top) and SIX6OS1 (bottom) sequence schematics indicating the location and consequence of infertility-associated mutations of SYCE1 and 1021 internal deletion of SIX6OS1, alongside the principal constructs used in this study. (C) SDSpolyacrylamide gel electrophoresis (SDS-PAGE) analysis of the purified recombinant proteins used in this study. The dominant degradation product of SYCE1POF is indicated by an asterisk; its identity was confirmed by the observed cleavage of degraded MBP- and His-SYCE1POF fusion proteins upon treatment with TEV protease (fig. S1, A and B), consistent with it representing C-terminal degradation down to SYCE1s structural core. Mw, weight-average molecular weight. (D) SEC-MALS analysis. SYCE1core (yellow), SYCE1POF (green), and full-length SYCE1 (violet) are dimeric species of 36, 48 (39 kDa for the degradation product), and 86 kDa, respectively (theoretical dimers: 37, 55, and 80 kDa). dRI, differential refractive index. Data for SYCE1core and full-length SYCE1 are reproduced from (28).

In recent years, a variety of cellular imaging, biochemical and structural biology approaches have begun to uncover the molecular structures, interactions, and mechanisms responsible for mammalian SC assembly. SYCP1 self-assembles into a supramolecular lattice that provides the underlying 100-nm synapsis between chromosome axes (22, 23), while SYCP3 assembles into regularly repeating filaments that support chromosomal looping (24, 25). The five CE proteins provide essential structural supports for the SYCP1 lattice that enable its continuous and cooperative extension along the entire chromosome length. In this capacity, CE proteins have been categorized as synaptic initiation factors (SYCE3, SYCE1, and SIX6OS1) and elongation factors (SYCE2 and TEX12), of which their disruption leads to complete loss of tripartite SC structure and failure of extension of short SC-like stretches, respectively (10, 11, 1618). Of synaptic initiation factors, SYCE3 forms dimers that undergo potentially limitless self-assembly (26, 27), SYCE1 forms antiparallel dimeric assemblies (28), and SIX6OS1 is an SYCE1-interacting protein of unknown structure (11). These likely act as short-range structural supports between SYCP1 molecules, possibly in transverse, longitudinal, and vertical orientations to stabilize a local three-dimensional SYCP1 lattice (22). In contrast, SYCE2 and TEX12 exist as a seemingly constitutive complex that undergoes self-assembly into fibers of many micrometers in length (29), which likely provide the long-range structural supports that stabilize continuous growth of the SYCP1 lattice along the entire chromosome axis (22).

Owing to the essential roles of meiotic recombination, synapsis, and chromosome dynamics in mammalian meiosis (15, 3034), their defects are associated with human infertility, recurrent miscarriage, and aneuploidies (35, 36). As genetic causes of infertility, they typically fall within the category of idiopathic cases, having no readily diagnosable and clinically resolvable cause. Within the 10 to 15% of couples who suffer from infertility, approximately 25% are idiopathic and of likely genetic origin, comprising 50 to 80% of cases of nonobstructive azoospermia (NOA) and premature ovarian failure (POF) (36, 37). While individual infertility mutations are inherently unlikely to become widespread in a population, they can be found within families, especially when consanguineous (38), and provide crucial insights into their common targets and the molecular mechanisms that they disrupt.

Within the SC, familial infertility mutations have been identified for SYCP3 and SYCE1 (36). All identified SYCP3 mutations are autosomal dominant and alter or delete its structural cores C terminus that mediates filamentous assembly, so likely sequester wild-type (WT) molecules into inactive complexes (24, 36). In contrast, the three identified SYCE1 mutations are autosomal recessive and were found in two familial cases of NOA and one of POF (36). The two NOA cases are splice-site mutations, c.197-2A>G and c.375-2A>G, which are predicted to result in a truncated product of amino acids 1 to 65 and an internal deletion of amino acids 126 to 155, respectively (39, 40). These remove or delete part of human SYCE1s structural core that is encoded by amino acids 25 to 179, so can be explained by disruption of its dimeric structure (Fig. 1B) (28, 36). The POF mutation c.613C>T generates a premature stop codon (p.Gln241*) to give a truncated product of amino acids 1 to 240, relative to the canonical 351amino acid isoform (Fig. 1B) (41). However, as this truncation lies outside SYCE1s structural core, the molecular mechanism that is disrupted, and thereby responsible for infertility, remains unknown.

Here, we combine mouse genetics and cellular and biochemical studies to reveal a multivalent interaction mode between SYCE1 and SIX6OS1 that is disrupted by infertility-associated mutations of SYCE1. We find that the SIX6OS1 N terminus binds and disrupts the core dimeric structure of SYCE1 (amino acids 25 to 179) to form a 1:1 complex as the first interface, and its downstream sequence binds to SYCE1 amino acids 177 to 305 as the second interface. SYCE1s infertility-associated mutations c.375-2A>G (NOA) and c.613C>T (POF) specifically disrupt the first and second interfaces, respectively. Mice harboring the SYCE1 POF mutation and a targeted deletion within SIX6OS1 (which disrupts the first interface) are infertile, with failure of SC assembly. We conclude that both SYCE1-SIX6OS1 binding interfaces are essential for SC assembly and meiotic division, thus explaining how human infertility results from the differential targeting of binding interfaces by SYCE1s reported clinical mutations.

The SYCE1 POF mutation c.613C>T encodes a premature stop codon (p.Gln241*) that is predicted to generate a truncated protein product of amino acids 1 to 240, relative to SYCE1s canonical 351amino acid isoform (Fig. 1B) (41). We previously demonstrated that an N-terminal structural core encoded by amino acids 25 to 179 (SYCE1core) forms an -helical antiparallel coiled-coil structure that mediates head-of-head dimerization of SYCE1 (28). As this core region is retained (Fig. 1B), we predicted that SYCE1s antiparallel dimeric structure would be maintained within the 1- to 240-amino acid truncated product of the POF mutation (SYCE1pof). To test this, we purified recombinant SYCE1pof, generating purified material that contained approximately equal quantities of the full protein and a degradation product of apparent size consistent with degradation to the C-terminal boundary of its structural core (Fig. 1C and fig. S1, A and B). Circular dichroism (CD) spectroscopy confirmed that SYCE1pof contains a proportion of -helical structure consistent with retention of the 25179 core structure (fig. S1C), and SYCE1pof and SYCE1core demonstrated identical melting temperatures (Tm) of 39C (fig. S1D). Furthermore, analysis by size exclusion chromatography multiangle light scattering (SEC-MALS) confirmed that the full and degraded proteins are homodimers of 48 and 39 kDa, respectively (Fig. 1D). We conclude that SYCE1pof retains the dimeric structure imposed by its core 25179 region, so its SC and meiotic defects must result from additional structural or functional roles of its deleted C terminus.

Having established its retention of core dimeric structure, we next sought to determine the structural and functional consequence of the SYCE1 POF mutation on the SC and meiotic division in vivo. We thus generated mice harboring mutations of Syce1 alleles to introduce stop codons at amino acid position 243, equivalent to the human p.Gln241* mutation (figs. S2 and S3). While heterozygotes (designated Syce1POF/WT) were fertile, both male and female homozygotes (designated Syce1POF/POF) were infertile, replicating the autosomal recessive pattern of the POF mutation in humans (41). In male mutant mice, we observed reduced testis size (63% smaller, n = 3 mice at 2 months of age; fig. S4A) and a zygotene-like arrest similar to that observed in the SYCE1 knockout (16). There was defective SC assembly, with reduced staining for SYCP1 (Fig. 2A) and SYCE3 (Fig. 2B) and no staining for SYCE1 (Fig. 2C), SIX6OS1 (Fig. 2D), and SYCE2-TEX12 (fig. S4, B and C). Analysis of SYCE1 expression in the testis of Syce1POF/POF mice confirmed the presence of Syce1 transcript and a protein product of the correct molecular weight, albeit at reduced levels in comparison with WT (fig. S4, D and E, and table S1A). The Syce1POF open reading frame achieved WT levels of protein expression in a heterologous 293T cellular system (fig. S4F). We next studied the kinetics of DSB repair. Meiotic DSBs are generated by the nuclease SPO11 and are then resected to form single-stranded DNA ends that invade into the homologous chromosome by the recombinases RAD51 (DNA repair protein RAD51 homolog 1) and DMC1 (Meiotic recombination protein DMC1/LIM15 homolog) (42). DSBs are labeled by the presence of phosphorylated H2AX (-H2AX) (43). The distribution of -H2AX in mutant spermatocytes was similar to that found in WT cells at early prophase I but show increased staining at zygotene-like arrest (Fig. 2E). The distributions of RAD51 and DMC1 were detected on aligned LEs (Fig. 2, F and G) but in absence of mismatch repair protein MLH1 (DNA mismatch repair protein Mlh1) (marker of crossing-overs) (Fig. 2H). Together, these data indicate generation of DSBs but with failure of their repair and CO formation in Syce1POF/POF. In female mutant mice, we observed no follicles in adult ovaries (fig. S5A), and embryonic oocytes demonstrated zygotene arrest with mostly unaligned chromosome axes, recapitulating the human POF syndrome. Analysis of the SC revealed similar defects, with reduction in SYCP1 and SYCE3 (Fig. 3, A and B) staining (though to a lesser extent than males), and absence of SYCE1, SIX6OS1 (Fig. 3, C and D), and SYCE2-TEX12 (fig. S5, B and C). The distribution of -H2AX, RAD51, and DMC1 labeling in zygotene-like mutant oocytes was also increased and lacked MLH1 foci (Fig. 3, E to H). Thus, the SYCE1 POF mutation leads to male and female infertility with phenotypes of failed DSB repair, synapsis, and lastly SC assembly, similar to those previously observed upon disruption of structural components of the SC CE (10, 11, 1618).

(A) Double immunolabeling of WT pachytene and Syce1POF/POF zygotene-like spermatocytes with SYCP3 (red) and SYCP1 (green). In Syce1POF/POF spermatocytes, AEs fail to synapse and show a weak staining of SYCP1 along the axial elements (AEs). a.u., arbitrary units. (B to D) Double immunolabeling of spermatocyte spreads with SYCP3 (red) and the CE proteins (green). Syce1POF/POF zygotene-like spermatocytes showed a highly reduced signal of SYCE3 (B) and the absence of (C) SYCE1 and (D) SIX6OS1 from the AEs. (E) Double immunolabeling of -H2AX (green) and SYCP3 (red) in spermatocyte spreads from WT and Syce1POF/POF mice. -H2AX staining was persistent in Syce1POF/POF zygotene-like spermatocytes, but was restricted to the sex body in WT pachytene cells. (F and G) Double immunofluorescence of (F) RAD51 or (G) DMC1 (green) and SYCP3 (red). Syce1POF/POF zygotene-like spermatocytes showed increased numbers of foci of RAD51 and DMC1 along the AEs in comparison with WT, indicating unrepaired DSBs. (H) Double immunolabeling of MLH1 (green) and SYCP3 (red) showing the absence of COs (MLH1) in arrested Syce1POF/POF spermatocytes. Fluorescence intensity levels (A, B, and E) and number of foci (F and G) from WT and zygotene-like arrested spermatocytes are quantified in the right-hand plots. Welchs t test analysis: ***P < 0.0001. Scale bars, 10 m.

(A) Double immunolabeling of oocyte spreads from WT and Syce1POF/POF mice with SYCP3 (red) and SYCP1 (green). Syce1POF/POF oocytes became arrested in a zygotene-like stage where AEs remain unsynapsed and unaligned, with reduced levels of SYCP1. (B to D) Double immunolabeling of oocyte spreads with SYCP3 (red) and the CE proteins (green). Syce1POF/POF zygotene-like oocytes showed reduced SYCE3 signal (B) and a complete absence of (C) SYCE1 and (D) SIX6OS1 from the AEs. IP, immunoprecipitation. (E) Double immunostaining of spread preparations of WT pachytene and Syce1POF/POF zygotene-like oocytes with -H2AX (green) and SYCP3 (red). In Syce1POF/POF oocytes, the levels of -H2AX increased and were more restricted to AEs in comparison with WT pachytene cells. (F to G) Double immunolabeling of (F) RAD51 or (G) DMC1 (green) and SYCP3 (red), showing higher numbers of foci in AEs from mutant oocytes. (H) Labeling of MLH1 (green) and SYCP3 (red). MLH1 foci are absent from the AEs of Syce1POF/POF oocytes. Fluorescence intensity levels (A, B, and E) and number of foci (F and G) from WT and Syce1POF/POF zygotene-like oocytes are quantified in the right-hand plots. Welchs t test analysis: ***P < 0.0001. Scale bars, 10 m.

As the Syce1POF/POF mouse strain indicated a clear structural defect in the SC, we wondered whether the POF mutation may disrupt the known interaction between SYCE1 and fellow SC CE components SIX6OS1 and SYCE3 (11). The expression of SYCE1 and SIX6OS1 in COS7 cells produced cytoplasmic signals that became colocalized in foci upon coexpression (95% cells; Fig. 4A and fig. S6), in keeping with our previous findings (11). SYCE1pof formed similar or slightly reduced numbers of foci that equally colocalized with SIX6OS1, indicating a retention of SIX6OS1 binding (89% cells; Fig. 4A). We further demonstrated a similar coimmunoprecipitation of SIX6OS1 by WT SYCE1 and SYCE1pof upon coexpression in human embryonic kidney (HEK) 293 cells (Fig. 4B). Thus, the SYCE1-SIX6OS1 interaction is retained in the SYCE1 POF mutation. Could other disrupted functions contribute to the effect of the POF mutation? The only other known SYCE1 interactor is SYCE3, which undergoes low-affinity binding, as determined by its dissociation during purification (fig. S7, A and B). In contrast with the WT protein, the expression of SYCE1pof (cytoplasmic foci) in COS7 cells failed to recruit SYCE3 (preferentially nuclear) to their cytoplasmic foci (colocalization between SYCE3 and SYCE1 was observed for 95% of cells expressing WT SYCE1 and 21% of cells expressing SYCE1pof; Fig. 4C and fig. S6). Similarly, SYCE1pof failed to coimmunoprecipitate SYCE3 upon coexpression in HEK293 cells (Fig. 4D). Thus, while the SYCE1-SIX6OS1 complex is retained, the low-affinity SYCE1-SYCE3 complex is largely abolished in the SYCE1 POF mutation.

(A) Mouse SIX6OS1 colocalized with mouse SYCE1 and SYCE1POF in a cytoplasmatic punctate pattern upon coexpression in COS7 cells; the percentage of cells exhibiting colocalization is shown in the right-hand plot (n = 100 cells). DAPI, 4,6-diamidino-2-phenylindole. (B) HEK293T cells were cotransfected with the indicated expression vectors. Protein complexes were immunoprecipitated with anti-Flag or antienhanced green fluorescent protein (EGFP) antibodies, or mouse immunoglobulin G (IgG) as a negative control, and were analyzed by immunoblotting with the indicated antibody. GFP-mSIX6OS1 coimmunoprecipitated with Flag-mSYCE1 and Flag-mSYCE1POF, suggesting that the POF mutation of SYCE1 alone is insufficient to block the interaction. (C) COS7 cells were transfected with mouse Syce3 in combination with mouse Syce1 or Syce1pof as indicated. SYCE1 colocalized with SYCE3 in its own cytoplasmatic punctate pattern, and colocalization was substantially diminished for SYCE1POF (n = 100 cells). (D) Immunoprecipitation of protein complexes from HEK293T-cotransfected cells with an anti-Myc or anti-EGFP antibody or mouse IgG. SYCE1 coimmunoprecipitated with SYCE3, and the interaction was disrupted for SYCE1 POF, suggesting that the C-terminal region of SYCE1 is required for its interaction with SYCE3. The untransfected lanes in (B) and (D) show the absence of all the proteins in total protein extracts from untransfected 293T cells. Scale bars, 20 m.

What is the molecular basis of SIX6OS1 binding by SYCE1? As this is retained in SYCE1pof, we reasoned that SIX6OS1 binding must be mediated by SYCE1s structural core. We screened SYCE1core against a library of SIX6OS1 constructs through bacterial coexpression and identified a robust interaction with amino acids 1 to 67 of SIX6OS1, herein referred to as SIX6OS1N (Figs. 1B and 5A). We were able to purify the SYCE1core-SIX6OS1N complex by reciprocal affinity chromatography, ion exchange, and size exclusion chromatography (Fig. 5B) and found it to be stable under all experimental conditions tested. We were further able to purify similar complexes for SYCE1pof (with the same degradation product as upon isolated expression) and full-length SYCE1 (Fig. 1C and fig. S1B), confirming that SIX6OS1 binding is retained by all constructs containing the 25179 core. CD analysis revealed similar -helical content for SYCE1-SIX6OS1N complexes as for their isolated SYCE1 proteins (fig. S1C). CD thermal denaturation revealed slightly increased cooperativity of unfolding and melting temperatures for SYCE1-SIX6OS1N complexes relative to their isolated SYCE1 proteins (increasing from 39 to 43C, 39 to 41C, and 38 to 40C for SYCE1core, SYCE1pof, and full length, respectively; Fig. 5C and fig. S1D). SEC-MALS analysis revealed that all three SYCE1-SIX6OS1N complexes are 1:1, with molecular weights of 27, 37, and 46 kDa, respectively (Fig. 5D and fig. S7C). Thus, the SYCE1core undergoes conformation change from an antiparallel homodimer to a 1:1 complex upon binding to SIX6OS1N (Fig. 5E).

(A) Amylose pulldown following coexpression of MBP-SIX6OS1 175, 167, 175 1021, and free MBP with His-SYCE1core. (B) SDS-PAGE of the copurification of the SYCE1core-SIX6OS1n complex. Ni-NTA, Ninitrilotriacetic acid. (C) CD thermal denaturation recording the CD helical signature at 222 nm between 5 and 95C, as % unfolded; estimated melting temperatures (Tm) are indicated. (D) SEC-MALS analysis. SYCE1core-SIX6OS1n (blue), SYCE1POF-SIX6OS1n (red) and full-length SYCE1-SIX6OS1n (black) are 1:1 complexes of 27, 37 (29 kDa for the degradation product complex), and 46 kDa, respectively (theoretical 1:1 to 27, 36, and 48 kDa), while MBP-SIX6OS1n (gray) is a 57-kDa monomer (theoretical, 53 kDa). SDS-PAGE of the SYCE1POF-SIX6OS1n sample is shown in Fig. 1C. (E) Schematic of the conformational change of the SYCE1core antiparallel dimer (yellow) into a 1:1 SYCE1core-SIX6OS1n complex (yellow-blue). (F and G) SEC-SAXS analysis. (F) SEC-SAXS P(r) interatomic distance distributions of SYCE1core-SIX6OS1n (blue), SYCE1POF-SIX6OS1n (red), and SYCE1core (yellow), revealing maximum dimensions (Dmax) of 138, 180, and 186 , respectively. Their cross-sectional radii (Rc) are indicated (fig. S7D). (G) SAXS ab initio models of SYCE1core-SIX6OS1n (blue) and SYCE1core (yellow); averaged models were generated from 20 independent DAMMIF runs. Data for SYCE1core and full-length SYCE1 are reproduced from (28).

We analyzed the conformation of the SYCE1core-SIX6OS1N complex by size exclusion chromatography small-angle x-ray scattering (SEC-SAXS; fig. S7, D and E). The SAXS real-space pair-distance P(r) distribution (the distribution of interatomic distances within a protein structure) demonstrates positive skew, indicating that SYCE1core-SIX6OS1N retains the rod-like structure of SYCE1core, but with a reduction in its molecular length from 186 to 138 (Fig. 5F). Furthermore, its cross-sectional radius is slightly increased from 9 to 11 (fig. S7F), suggesting an increase from a two- to four-helical coiled coil. These geometric changes are consistent with the SYCE1core-SIX6OS1N 1:1 complex forming a shorter but wider coiled coil than the isolated SYCE1core dimer, as indicated by their SAXS ab initio models (Fig. 5G). Furthermore, the SAXS P(r) distribution of SYCE1pof indicates a similar elongated structure but with an increased tail to a maximum dimension of 180 (Fig. 5F), consistent with it containing the same SYCE1core-SIX6OS1N structure with an extended and potentially unstructured C terminus to amino acid 240. We conclude that SYCE1core mediates a direct interaction with SIX6OS1N that imposes a conformational change to a 1:1 complex that adopts a shorter and wider coiled-coil conformation than the isolated SYCE1core antiparallel homodimer.

Does the SYCE1core-SIX6OS1N complex represent the sole means by which SYCE1 interacts with SIX6OS1? We were unable to obtain soluble biochemical complexes containing SIX6OS1 sequences beyond its N terminus and so used yeast two-hybrid (Y2H) to test SYCE1 binding by full-length SIX6OS1. Having confirmed direct binding of SYCE1core to full-length SIX6OS1, we used C-terminal truncation to dissect its minimal binding site to amino acids 1 to 75, in keeping with our biochemical findings, and identified an additional interaction between SYCE1 177305 and full-length SIX6OS1 (Fig. 6A).

(A) Y2H analysis of interactions between SYCE1 and SIX6OS1 in which positive reactions are indicated by the growth of blue colonies. These data are representative of three repeats. (B) Schematic of the SYCE1-SIX6OS1 interaction based on the Y2H data in (A), with the two binding sites highlighted in red and green. The SYCE1 POF mutation blocks the second binding interface between SYCE1 177305 and SIX6OS1 downstream sequence within region 1262, whereas the SIX6OS1 1021 deletion blocks the first binding interface between SYCE1core (25179) and SIX6OS1n (167). (C) COS7 cells were transfected with mouse Six6os1 1021 alone or in combination with mouse Syce1. SIX6OS1 1021 showed nuclear localization with some cytoplasmatic signal and colocalized in cytoplasmic foci with SYCE1; the percentage of cells exhibiting colocalization is shown. Scale bars, 20 m. (D) Coimmunoprecipitation of SIX6OS1 1021 and Flag-SYCE1 from cotransfected HEK293T cells using anti-Myc or anti-EGFP antibodies, or mouse IgG as a negative control. SIX6OS1 1021 coimmunoprecipitated SYCE1, indicating that the second SYCE1 binding interface is retained. The untransfected lanes confirm the absence of SIX6OS1 1021 and SYCE1 in total protein extracts of untransfected 293T cells.

To establish whether SYCE1core and 177305 bind to the same or distinct sites within SIX6OS1, we established an internal deletion of SIX6OS1 amino acids 10 to 21 (1021) that blocks formation of the SYCE1core-SIX6OS1N biochemical complex (Fig. 5A). SIX6OS1 122 did not interact with any SYCE1 construct (Fig. 6A), indicating that amino acids 10 to 21 are necessary but not sufficient for SYCE1core binding. While 1021 completely abrogated the Y2H interaction of full-length SIX6OS1 with SYCE1core (25179), it retained a robust interaction with SYCE1 177305, suggesting distinct SIX6OS1-binding sites (Fig. 6A). Furthermore, 1021 blocked the ability of SIX6OS1 1262 to interact with SYCE1core and SYCE1pof (amino acids 25 to 240) while retaining its binding to full-length and 25315 SYCE1 (Fig. 6A). Thus, SYCE1 undergoes multivalent interactions with SIX6OS1, with the first binding interface mediated by SYCE1core and SIX6OS1N (167), and the second interface mediated by SYCE1 177305 and downstream sequence within SIX6OS1 1262. Furthermore, the first and second binding interfaces are specifically disrupted by SIX6OS1 deletion 1021 and the SYCE1 POF mutation, respectively, and in both cases, an SYCE1-SIX6OS1 complex is retained through the unaffected alternative site (Fig. 6B).

Our biochemical and Y2H analyses concluded that SIX6OS1 1021 would disrupt the first SYCE1-SIX6OS1 binding interface while retaining complex formation through the second interface. In support of this, we found that SIX6OS1 1021 retained its ability to form intense colocalized foci with SYCE1 upon coexpression in COS7 cells (98% of the cells; Fig. 6C), similar to our previous observations for the SYCE1 POF mutation (Fig. 4A). Similarly, SIX6OS1 1021 retained its ability to coimmunoprecipitate SYCE1 upon coexpression in HEK293 cells (Fig. 6D). Thus, localization and coimmunoprecipitation data from heterologous systems support our Y2H findings that the second SYCE1-SIX6OS1 binding interface is retained in SIX6OS1 1021, mirroring the retention of only the second binding interface that is predicted for the 126155 deletion of the SYCE1 c.375-2A>G NOA mutation (40).

Having established that the severe phenotype of the SYCE1 POF mutation likely results from the disruption of the second SYCE1-SIX6OS1 binding interface and its interaction with SYCE3, we wondered whether a similar phenotype would result from the sole disruption of the first SYCE1-SIX6OS1 binding interface. To test this, we generated mice harboring mutations of Six6os1 alleles encoding internal in-frame deletions of amino acids 10 to 21 (equivalent numbering to the human protein) (fig. S8, A and B). While heterozygotes (designated Six6os11021/WT) were fertile, both male and female homozygotes (designated Six6os11021/1021) were infertile, similar to the SYCE1 POF mutation. In males, we observed reduced testis size (Fig. 7A) and a zygotene-like arrest similar to that observed in the Six6os1 and Syce1 knockouts (11, 16). The mutant spermatocytes were defective in synapsis and SC assembly, with reduced staining for SC proteins SYCP1 (Fig. 7B) and SYCE3 (Fig. 7C) and no staining for SYCE2-TEX12 (Fig. 7, F and G). In contrast with their complete absence in the SYCE1 POF mutation, we observed some residual staining for SYCE1 (Fig. 7D) and SIX6OS1 (Fig. 7E) even though the levels of transcription of Six6os11021 appeared to be increased in the mutant testis (fig. S9 and table S1B). We detected -H2AX (fig. S10A) and DMC1/RAD51 foci (fig. S10, B and C) on aligned axial elements but no MLH1 foci (fig. S10D), indicating the proper induction of DSBs with their failed repair and absence of COs. Thus, SIX6OS1 1021 leads to infertility with a phenotype of failed DSB repair and SC assembly, similar to the SYCE1 POF mutation and those reported for disruption of structural components of the CE (10, 11, 1618).

(A) Genetic deletion of amino acids 10 to 21 of SIX6OS1 led to a reduction of the testis size compared to the WT (mice of 3 months of age). (B) Double immunolabeling of WT pachytene and Six6os1/ zygotene-like spermatocytes with SYCP3 (red) and SYCP1 (green). AEs failed to synapse in Six6os1/ spermatocytes despite partial alignment, with reduced loading of SYCP1 along the AEs. (C to G) Double immunolabeling of spermatocyte spreads with SYCP3 (red) and all CE components (green). Six6os1/ zygotene-like spermatocytes showed reduced signals of (C) SYCE3, (D) SYCE1, and (E) SIX6OS1, and the absence of (F) SYCE2 and (G) TEX12 from the AEs. Scale bars, 10 m. Plots represent the quantification of fluorescence intensity levels in Six6os1/ zygotene-like and WT pachytene spermatocytes (B to E). Welchs t test analysis: ***P < 0.0001. (H) Schematic of how the SYCE1 antiparallel dimer (yellow) undergoes conformational change upon interaction with SIX6OS1 (blue) to form a possible 1:1 complex through consecutive binding interfaces mediated by SYCE1core-SIX6OS1n (site 1) and SYCE1 177305 and downstream sequence within SIX6OS1 1262 (site 2). The consequence of SYCE1 mutations associated with POF (c.613C>T) and NOA (c.375-2A>G) and SIX6OS1 1021 on the integrity, predicted stoichiometry, and conformation of resultant SYCE1-SIX6OS1 complexes is illustrated. Photo credit (A): Laura Gmez-H, Instituto de Biologa Celular y Molecular del Cncer.

Thus, we conclude that both first and second SYCE1-SIX6OS1 binding interfaces are essential for SC assembly and meiotic progression. Furthermore, these findings explain how the sole disruption of individual SYCE1-SIX6OS1 binding interfaces by SYCE1 NOA (c.375-2A>G) and POF (c.613C>T) mutations result in the reported familial cases of human infertility.

The structural and functional integrity of the SC is contingent on the structure and assembly of is constituent protein components. Here, we report that SC assembly depends on multivalent interactions between CE components SYCE1 and SIX6OS1 that are disrupted by infertility-associated mutations of SYCE1. The first binding interface is formed by the structural core of SYCE1 (SYCE1core; amino acids 25 to 179), which undergoes conformational change from an antiparallel homodimer to a 1:1 complex upon interaction with SIX6OS1s N terminus (SIX6OS1N; amino acids 1 to 67). The second binding interface is formed by downstream sequence within SIX6OS1 1262 interacting directly with SYCE1 177305. Through the generation of mice harboring an internal deletion of SIX6OS1s N terminus (1021) and the SYCE1 POF mutation (murine p.Gln243*), which specifically block the first and second binding interfaces, respectively, we find that integrity of both SYCE1-SIX6OS1 binding interfaces is essential for SC assembly and meiotic progression in vivo.

What is the structure of the SYCE1-SIX6OS1 complex? SEC-SAXS analysis revealed that the SYCE1core-SIX6OS1N 1:1 complex formed by the first binding interface has a length and cross-sectional radius of 138 and 11 , in comparison with 186 and 9 for the SYCE1core dimer. We previously reported a model for SYCE1core in which amino acids 52 to 179 form an antiparallel dimeric coiled coil containing a midline kink, with helices of amino acids 25 to 50 packing against this structural core (fig. S11A) (28). A maximum dimension of 138 for SYCE1core-SIX6OS1N suggests a coiled-coil length of approximately 92 amino acids, given a helical rise of 1.5 per amino acid (44). This could be explained by the 52179 region forming a helix-turn-helix structure through exaggeration of the kink to a full turn, which may combine with the helix formed by amino acids 25 to 50 and an helix from SIX6OS1N to form a four-helical coiled coil, consistent with its 11- cross-sectional radius (fig. S11B). The second binding interface between SYCE1 177305 and downstream sequence within SIX6OS1 1262 suggests that SYCE1core-SIX6OS1N likely adopts a parallel configuration to form a single SYCE1-SIX6OS1 1:1 complex of consecutive first and second binding interfaces (Fig. 7H).

Our analysis of the SYCE1-SIX6OS1 complex reveals how the three reported clinical mutations of SYCE1 differentially affect its interaction with SIX6OS1. The SYCE1 NOA mutation c.197-2A>G is predicted to result in a truncated product of amino acids 1 to 65 (39), which would disrupt both binding sites and so likely abrogates SYCE1-SIX6OS1 complex formation and thus works as a null mutation. The SYCE1 NOA mutation c.375-2A>G is predicted to result in internal deletion of amino acids 126 to 155 (40), which would disrupt the first binding interface while retaining the second binding interface, and so is likely to result in a conformationally altered 1:1 complex (Fig. 7H). In contrast, while 1021 SIX6OS1 similarly disrupts the first binding interface and retains the second binding interface, the SYCE1core remains unaffected and so is predicted to enable formation of a head-to-head 2:2 complex (Fig. 7H). The SYCE1 POF mutation c.613C>T generates a premature stop codon (p.Gln241*) that gives a truncated product of amino acids 1 to 240 (41), which we have demonstrated disrupts the second binding interface while retaining the first binding interface (Fig. 7H). Thus, the latter two infertility-associated mutations of SYCE1 specifically disrupt one SYCE1-SIX6OS1 interface while retaining the other, which combine with our mouse genetic studies to confirm that both interfaces are essential for the structural assembly of the SC and its function in meiosis.

What are the structural roles of SYCE1 and SYCE1-SIX6OS1 within the SC? Our analyses of Syce1POF/POF and Six6os11021/ 1021 mouse strains revealed similar phenotypes with retention of some SYCP1 and SYCE3 recruitment to chromosome axes, with absence or substantial reduction of SYCE1 and SIX6OS1, and lack of recruitment of SYCE2-TEX12. This pattern suggests a hierarchical model of SC assembly in which SYCE1 and SYCE1-SIX6OS1 lie downstream of SYCP1 and SYCE3, and upstream of SYCE2-TEX12 (Fig. 1A), which is consistent with existing knockout data (10, 11, 1518). The disruption of SYCE3 binding by the POF mutation suggests that its SYCE1-SIX6OS1 complex would be defective for SC recruitment, whereas the SYCE1-SYCE3 interaction, and hence SC recruitment, should be retained for the SYCE1-SIX6OS1 complex of the SIX6OS1 1021 internal deletion. This explains the greater severity of the CE loading defect in Syce1POF/POF than Six6os11021/ 1021, in which SYCE1 and SIX6OS1 staining was substantially reduced in the latter (83.77% of SYCE1 reduction, 0.12 0.02 in the Six6os11021/ 1021 versus 0.73 0.21 in the WT; 68.27% of SIX6OS1 reduction, 0.24 0.02 in the Six6os11021/ 1021 versus 0.76 0.15 in the WT) but completely absent in the former. Thus, we conclude that the first and second SYCE1-SIX6OS1 interfaces are essential for initiation of SC CE formation and likely function by stabilizing a local three-dimensional SC structure that mediates recruitment and self-assembly of SYCE2-TEX12 into fibers that mediate SC elongation along the chromosome axis. Furthermore, the SYCE1 POF mutation is likely worsened by its additional disruption of SYCE3 binding that removes the residual SYCE1-SIX6OS1 SC recruitment observed for the SIX6OS1 1021 internal deletion.

The existence of SYCE1core as an isolated antiparallel homodimer and in a 1:1 complex with SIX6OS1N raises the question of which is the biologically relevant conformation. It is important to highlight that the CD melting temperatures of SYCE1-SIX6OS1N complexes and isolated SYCE1 dimers are very similar, ranging between 38 and 41C. In contrast, highly stable SC components SYCE2-TEX12 and SYCP3 have melting temperatures of approximately 65C (24, 29). Thus, the relatively low melting temperatures of SYCE1-SIX6OS1N complexes and SYCE1 suggest that they may undergo conformational change in vivo, with each conformation functioning at different stages of meiosis and/or at different locations within the SC. Furthermore, our analysis of SYCE1 infertility-associated mutations and a targeted internal deletion of SIX6OS1 revealed at least four possible conformations of SYCE1 and SYCE1-SIX6OS1 complexes (Fig. 7H). Owing to the direct competition between SIX6OS1N binding and SYCE1core dimerization, these conformations could be achieved in the absence of mutations, through alterations of protein levels, local concentrations, allosteric changes, and posttranslational modifications. Hence, alterative conformations of SYCE1 and SYCE1-SIX6OS1 are intriguing candidates for local structural heterogeneity and the propagation of signals along the length of the SC, which could function in roles such as crossover enforcement and interference. Thus, as we progress toward a full molecular understanding of the mammalian SC, the multivalent SYCE1-SIX6OS1 interactions described herein provide tantalizing possibilities for a dynamic role of SC structure in its enigmatic functions in the mechanics of meiosis.

Human SYCE1 sequences were cloned into pHAT4 and pMAT11 vectors (45) for bacterial expression as His- and His-MBP (Maltose-Binding Protein) fusions with TEV (Tobacco Etch Virus) cleavage sites for fusion protein removal. Human SIX6OS1 was cloned into pRSF-Duet1 vectors with a TEV-cleavable N-terminal MBP fusion for coexpression with SYCE1. Proteins were expressed in BL21(DE3) Escherichia coli cells (Novagen), in 2xYT (Yeast Extract Tryptone) media. Expression was induced with addition of 0.5 mM isopropyl--d-thiogalactopyranoside with the cells incubated at 25C for 16 hours. Cells were lysed via sonication in 20 mM tris (pH 8.0) and 500 mM KCl, followed by centrifugation. Supernatant was applied to an amylose (New England Biolabs) affinity chromatography column, followed by HiTrap Q HP (GE Healthcare) anion exchange chromatography. His- and His-MBP/MBP tags were removed by incubation with TEV protease at 4C for 16 hours. The cleaved proteins were further purified by HiTrap Q HP (GE Healthcare) anion exchange chromatography followed by size exclusion chromatography (HiLoad 16/600 Superdex 200, GE Healthcare). The purified proteins/complexes were concentrated using Microsep Advance 3 kDa (PALL) centrifugal filter units and stored at 80C. Protein samples were analyzed for purity using Coomassie-stained SDSpolyacrylamide gel electrophoresis. Protein molecular weights and extinction coefficients were calculated using ExPASY ProtParam (http://web.expasy.org/protparam/) with protein concentrations determined using a Cary 60 ultraviolet (UV) spectrophotometer (Agilent).

Far-UV CD spectra were collected using a Jasco J-810 spectropolarimeter (Institute for Cell and Molecular Biosciences, Newcastle University). Wavelength scans were recorded at 4C from 260 to 185 nm at 0.2-nm intervals using a 0.2-mm path length quartz cuvette (Hellma). Protein samples were measured at 0.2 to 0.4 mg/ml in 10 mM Na2HPO4 (pH 7.5) and 150 mM NaF. Nine measurements were taken for each sample, averaged, buffer-corrected and converted to mean residue ellipticity (MRE) ([]) (1000 degcm2dmol1 per residue). Spectral deconvolutions were carried out using the Dichroweb CDSSTR algorithm (http://dichroweb.cryst.bbk.ac.uk). CD thermal melts were recorded at 222 nm between 5 and 95C, at intervals of 0.5C with a 1C/min ramping rate. Protein samples were measured at 0.1 mg/ml in 20 mM tris (pH 8.0), 150 mM KCl, and 2 mM dithiothreitol (DTT), using a 1-mm path length quartz cuvette (Hellma). The data were plotted as % unfolded after conversion to MRE ([]222,x-[]222,5)/([]222,95-[]222,5). The melting temperature was determined as the temperature at which the proteins are 50% unfolded.

SEC-MALS analysis of protein samples was carried out at concentrations of 5 to 20 mg/ml in 20 mM tris (pH 8.0), 150 mM KCl, and 2 mM DTT. Samples were loaded onto a Superdex 200 Increase 10/300 GL (GE Healthcare) column at 0.5 ml/min using an KTA Pure (GE Healthcare) system. The eluate was fed into a DAWN HELEOS II MALS detector (Wyatt Technology), followed by an Optilab T-rEX differential refractometer (Wyatt Technology). SEC-MALS data were collected and analyzed using ASTRA 6 software (Wyatt Technology), using Zimm plot extrapolation with a 0.185 ml/g dn/dc value to determine absolute protein molecular weights.

SEC-SAXS experiments were carried out on beamline B21 at the Diamond Light Source synchrotron facility (Oxfordshire, UK). Protein samples at concentrations 6 to 20 mg/ml were loaded onto a Superdex 200 Increase 10/300 GL size exclusion chromatography column (GE Healthcare) in 20 mM tris (pH 8.0) and 150 mM KCl at 0.5 ml/min using an Agilent 1200 high-performance liquid chromatography system. The eluate was fed through the experimental cell, with SAXS data recorded at 12.4 keV, in 3.0-s frames with a detector distance of 4.014 m. Sctter 3.0 (www.bioisis.net) was used to subtract and average the frames and carry out the Guinier analysis for the Rg and cross-sectional Rg (Rc). P(r) distributions were fitted using PRIMUS. Ab initio modeling was performed using DAMMIF (46) imposing P1 symmetry. Twenty independent runs were averaged. The PyMOL Molecular Graphics System, Version 2.0 Schrdinger, LLC was used to generate images of the SAXS ab initio models.

Constructs of human SYCE1 and SIX6OS1 were cloned into pGBKT7 and pGADT7 vectors (Clontech). Y2H experiments were carried out using the Matchmaker Gold system (Clontech) according to the manufacturers guidelines. Y187 yeast strain was transformed with pGBKT7 vectors, while the Y2H gold strain was transformed with pGADT7 vectors. Yeast transformations were carried out using standard lithium acetate methods. Mating of the two strains was carried out in 0.5 ml 2 YPDA (Yeast Peptone Dextrose Adenine) at 30C, 40 rpm, by mixing respective colonies. After 24 hours, the cultures were centrifuged and pellets were resuspended in 0.5xYPDA. These were then plated onto SD/Trp/Leu to select for mated colonies and onto SD/Trp/Leu/Ade/His with X--gal to detect mated colonies through ADE1, HIS3, and MEL1 reporter gene activation. Plates were then incubated for 5 days at 30C.

For developing the Syce1POF/POF model, Syce1single-guide RNA (sgRNA) 5-TGACTTCTTTCCACACTATC-3 targeting the intron 10 was predicted at https://eu.idtdna.com/site/order/designtool/index/CRISPR_SEQUENCE. This crRNA (CRISPR RNA), the tracrRNA (trans-activating CRISPR RNA), and the ssODN (single-stranded donor oligonucleotides) (5-GGGACTCTTCCTCCGAAGCCATGAGGCAGCTGCAGCAATGTAAGATGCAGGGTGGGGCAGGAGGAGGAAATGTCTAGCACTGACTTCTTTCCACACCCCCAGGTAGATCTTCAAGGATGAGAACAAGAAAGCTGAGG

AGTTCCTAGAGGCTGCAGCTCAGCAGCACGAGCAGCTGCAGCAGAGGTGCCACCAGCTACAG-3) were produced by chemical synthesis at IDT. The ssODN contains the mutated base (C>T, p.Gln241*) and the peptidyl-glycine -amidating monooxygenase (PAM) was mutated by substituting it by the human intron sequence (ACTATCAG > CCCCCAG). The crRNA and tracrRNA were annealed to obtain the mature sgRNA. A mixture containing the sgRNAs, recombinant Cas9 protein (IDT), and the ssODN [Cas9 (30 ng/l), annealed sgRNA (20 ng/l each), and ssODN (10 ng/l)] were microinjected into B6/CBA F2 zygotes (hybrids between strains C57BL/6 J and CBA/J) (47) at the Transgenic Facility of the University of Salamanca. Edited founders were identified by polymerase chain reaction (PCR) amplification (Taq polymerase, NZYTech) with primers flanking the exon 11 (primer F 5-CTGTAGAGAAACTGATGAAAGT-3 and R 5-CAAGAAAATATGAAGAGACATAC-3) producing an amplicon of 398 base pairs (bp) for both edited and WT alleles, and either direct sequenced or subcloned into pBlueScript (Stratagene) followed by Sanger sequencing, selecting the point mutation in the targeted region of Syce1 (fig. S2). For generating the Six6os11021/ 1021 (named as Six6os1/), Six6os1-crRNA G68 5-ATCTGTTTGTCAGTTTGGAC-3 and Six6os1-crRNA G75 5-TACTTATGTCTTGCTCATAC-3 targeting exons 2 and 3 and the ssODN (5-GTTCTTACTTTATGTATGCTCTTTTATATATGGCTTCTGAAAGTTTTATTATTTATTTTACACAGTGTCCAAGATGAATGATAATCTGTTTGTCAGTTTGCAAGACATAAGTATTAAAGAAGATACGATTCAAAGAATTAATAGTAAGTAGTTTTGCATGAAATAAATATTTTAGTCTTTTGGTTTTATCTTATATAGCA-3) were predicted, produced, and microinjected, as previously described. Edited founders with the predicted deletion were identified through PCR using primers flanking this region (primer F 5-CACTTACATTTTCCTTTTAAGAATGC-3 and R 5-CCCCTCTCATACATACAAGTTGC-3). The 1021 allele was 285 bp long versus 413 bp of the WT allele (fig. S8, A and B). The founders were crossed with WT C57BL/6 J to eliminate possible unwanted off-targets. Heterozygous mice were resequenced and crossed to give rise to edited homozygous. Genotyping was performed by analysis of the PCR products of genomic DNA with primers F and R.

Histology. For histological analysis of ovaries, after the necropsy of the mice, their ovaries were removed and fixed in formol 10%. They were processed into serial paraffin sections and stained with hematoxylin and eosin. The samples were analyzed using a microscope OLYMPUS BX51, and images were taken with a digital camera OLYMPUS DP70.

Immunocytology. Testes were detunicated and processed for spreading using a conventional dry-down technique. Oocytes from fetal ovaries (E17.5 embryos) were digested with collagenase, incubated in hypotonic buffer, disaggregated, and fixed in paraformaldehyde. Both meiocyte preparations were incubated with the following primary antibodies for immunofluorescence (IF): rabbit SIX6OS1 R1 and R2 [1:100, Proteogenix (11)], rabbit SYCE1 17406-1-AP (1:50, Proteintech), guinea pig SYCE1 (1:100, provided by C. Hg), mouse SYCP3 immunoglobulin G (IgG) sc-74569 (1:1000, Santa Cruz Biotechnology), rabbit serum SYCP3 K921 (1:500), rabbit SYCP1 IgG ab15090 (1:200), guinea pig SYCE3(1:20, provided by R. Benavente), guinea pig SYCE2 (1:100, provided by C. Hg), rabbit TEX12 IgG (1:100, provided by R. Benavente), rabbit anti--H2AX (ser139) IgG #07-164 (1:200) (Millipore), mouse MLH1 51-1327GR (1:5, BD Biosciences), rabbit RAD51 PC130 (1:50, Calbiochem), and rabbit DMC1 R1 and R2 (1:500, Proteogenix). The secondary antibodies used were goat Alexa 555 -mouse A-32727, goat Alexa 488 -mouse A-11001, donkey Alexa 555 -rabbit A-31572 (1:200, Thermo Fisher Scientific), goat Alexa 488Fab -rabbit 111-547-003, and donkey fluorescein isothiocyanate guinea pig 706-095-148 (1:100, Jackson Immunoresearch). Slides were visualized at room temperature using a microscope (Axioplan 2; Carl Zeiss Inc.) with 63 objectives with an aperture of 1.4 (Carl Zeiss Inc.). Images were taken with a digital camera (ORCA-ER; Hamamatsu) and processed with OPENLAB 4.0.3 and Photoshop (Adobe). Quantification of fluorescence signals was performed using ImageJ software.

HEK293T and COS7 cell lines were and obtained from the American Type Culture Collection (ATCC). Cell lines were tested for mycoplasma contamination (Mycoplasma PCR ELISA, Sigma-Aldrich). They were transfected with Jetpei (PolyPlus) according to the manufacturers protocol.

Immunoprecipitation and Western blotting. HEK293T cells were transiently transfected, and whole-cell extracts were prepared and cleared with protein G Sepharose beads (GE Healthcare) for 1 hour. The antibody was added for 2 hours, and immunocomplexes were isolated by adsorption to protein G Sepharose beads overnight. After washing, the proteins were eluted from the beads with 2 SDS gel-loading buffer 100 mM tris-HCl (pH 7), 4% SDS, 0.2% bromophenol blue, 200 mM -mercaptoethanol, and 20% glycerol and loaded onto reducing polyacrylamide SDS gels. The proteins were detected by Western blotting with the indicated antibodies. Immunoprecipitations were performed using mouse -Flag IgG (5 g; F1804, Sigma-Aldrich), mouse green fluorescent protein (-GFP) IgG (4 g; CSB-MA000051M0m, Cusabio), mouse -Myc obtained from hybridoma cell myc-1-9E10.2 ATCC (4 g), and ChromPure mouse IgG (5 g/1 mg protein; 015-000-003). Primary antibodies used for Western blotting were rabbit -Flag IgG (1:2000; F7425 Sigma-Aldrich), goat -GFP IgG (sc-5385, Santa Cruz Biotechnology) (1:3000), and rabbit -Myc Tag IgG (1:3000; #06-549, Millipore). Secondary horseradish peroxidaseconjugated -mouse (715-035-150, Jackson ImmunoResearch), -rabbit (711-035-152, Jackson ImmunoResearch), or -goat (705-035-147, Jackson ImmunoResearch) antibodies were used at 1:5000 dilution. Antibodies were detected by using Immobilon Western Chemiluminescent HRP Substrate from Millipore. Both Syce1POF and Six6os1 1021 complementary DNAs (cDNAs) used for IF and coimmunoprecipitation experiments were reverse transcription PCRamplified (the primers used for it were Syce1 S 5-GAGCAGTATGGCCACCAGACC-3 and Syce AS 5-GAGGAGGGTATTAGGTCCTGC-3; Six6os1 S 5-AGTGTCCAAGATGAATGATAATCTG-3 and Six6os1 AS 5-GTTCAAAAATAATAACTCAAAAAAAC-3) from total RNA extracted from Syce1POF/POF and Six6os11021/ 1021 mice, respectively. PCR-amplified fragments were cloned in pcDNA3-based mammalian expression vectors with different tags (enhanced GFP or Flag) and verified by Sanger sequencing.

Total RNA was isolated from testis of WT and mutant mice. To analyze the expression of Syce1 and Six6os1 mRNAs, equal amounts of cDNA were synthesized using SuperScript II Reverse Transcriptase (Invitrogen, Life Technologies) and Oligo (dT). Quantitative PCR (qPCR) was performed using FastStart Universal SYBR Green Master Mix (ROX) (Roche) and specific forward and reverse primers: qSYCE1_F 5-GGACATGGTGAAAAAGTTGCAG-3 and qSYCE1_R 5-CAGTTCCTTCTGCAGGTTGTC-3 for Syce1, and qSIX6OS1_F 5-GCTGAATGTGGAGATAAAGAG-3 and qSIX6OS1_R 5-AGGAGTTTCAGGAGTTTGAGG-3 for Six6os1. All qPCR reactions were performed at 95C for 10 min and then 40 cycles of 95C for 15 s and 62C for 1 min on the iQ5 Thermal Cycler (Bio-Rad). -Actin was amplified as a housekeeping gene with the primers q-actin_F 5-GGCACCACACCTTCTACAATG-3and q-actin_R 5-GTGGTGGTGAAGCTGTAGCC-3.

Statistics. To compare counts between genotypes, we used the Welchs t test (unequal variances t test), which was appropriate as the count data were not highly skewed (i.e., were reasonably approximated by a normal distribution) and, in most cases, showed unequal variance. We applied a two-sided test in all the cases. Asterisks denote statistical significance: *P < 0.01, **P < 0.001, and ***P < 0.0001.

Acknowledgments: We thank Diamond Light Source and the staff of beamline B21 (proposals sm15836, sm21777, and sm23510). We thank H. Waller for assistance with CD data collection. Funding: O.R.D. is a Sir Henry Dale Fellow jointly funded by the Wellcome Trust and Royal Society (grant number 104158/Z/14/Z). This work was supported by MINECO (BFU2017-89408-R) and by Junta de Castilla y Leon (CSI239P18). F.S.-S., L.G.-H., and N.F.-M. are supported by European Social Fund/JCyLe grants (EDU/556/2019, EDU/1083/2013, and EDU/310/2015). CIC-IBMCC is supported by the Programa de Apoyo a Planes Estratgicos de Investigacin de Estructuras de Investigacin de Excelencia cofunded by the CastillaLen autonomous government and the European Regional Development Fund (CLC201701). The funders had no role in the study design, data collection and analysis, decision to publish, or preparation of the manuscript. Ethics statement: Mice were housed in a temperature-controlled facility (specific pathogen free) using individually ventilated cages, standard diet, and a 12-hour light/dark cycle, according to European Union laws at the Servicio de Experimentacion Animal, SEA. Mouse protocols were approved by the Ethics Committee for Animal Experimentation of the University of Salamanca (USAL). We made every effort to minimize suffering and to improve animal welfare. Blinded experiments were not possible since the phenotype was obvious between WT and mutant mice for all of the experimental procedures used. No randomization methods were applied since the animals were not divided in groups or treatments. The minimum size used for each analysis was two animals per genotype. Author contributions: F.S.-S., L.G.-H., O.M.D., N.F.-M., C.G.-P., M.S.-M., and O.R.D. performed experiments. O.R.D. and A.M.P. designed experiments, analyzed data, and wrote the manuscript. A.M.P., E.L., and O.R.D. supervised and designed the work. Competing financial interests: The authors declare that they have no competing interests. Data and materials availability: All data needed to evaluate the conclusions in the paper are present in the paper and/or the Supplementary Materials. Additional data related to this paper may be requested from the authors.

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Meiotic chromosome synapsis depends on multivalent SYCE1-SIX6OS1 interactions that are disrupted in cases of human infertility - Science Advances

Thought to Be Extinct, New Guinea’s Singing Dogs Found Alive in the Wild – Smithsonian Magazine

The New Guinea singing dog was thought to be extinct in the wild, but new genetic research suggests their distinctive howl still echoes in the highlands of the Oceanic islands, reports James Gorman for the New York Times.

Not seen in the wild by scientists since the 1970s, conservation biologists thought the only New Guinea singing dogs left on Earth were the 200 to 300 captive animals residing in zoos and sanctuaries, reports Michael Price for Science.

But anecdotal reports and a pair of photographs suggested a similarly tan-colored, medium-sized wild dog was roaming the mountainous terrain near a gold mine on Papua, the western, Indonesian half of the large island north of Australia.

The locals called them the highland wild dog, James McIntyre, president of the New Guinea Highland Wild Dog Foundation and co-author of the paper, tells the Times. The New Guinea singing dog was the name developed by caucasians. Because I didnt know what they were, I just called them the highland wild dogs.

To find out what these highland wild dogs really were, McIntyre trekked into the rugged terrain surrounding the Grasberg Mine, one of the worlds largest gold and copper mines, in 2016. The expedition produced 149 photographs of 15 individual dogs as well as an array of fecal samples. Per Science, if one were trying to cast a pooch for the role of the New Guinea singing dog, the wild dogs looked, acted and sounded the part.

However, the fecal samples didnt have enough genetic material for a proper analysis, so in 2018 the researchers returned and collected blood samples from three of the animals, according to the paper which was published this week in the journal Proceedings of the National Academy of Sciences.

These three samples were used to sequence the highland wild dogs genomes. The researchers then compared the dogs nuclear DNA with 16 captive New Guinea singing dogs, 25 dingoes as well as more than 1,000 individuals from 161 additional breeds.

The genetic analysis suggests that these highland wild dogs are in fact part of a wild population of New Guinea singing dogs. Crucially, the newly revealed wild population is much more genetically diverse than captive singing dogs, which descended from just eight individuals and are severely inbred, reports Katie Hunt for CNN.

Assuming these highland wild dogs are the original New Guinea singing dogs, so to speak, that really gives us a fantastic opportunity for conservation biology, Elaine Ostrander, a geneticist at the U.S. National Human Genome Research Institute and co-author of the study, tells Ed Cara of Gizmodo. Itll give us a chance to reintroduce the original genetics of these dogs into this conservation population.

Both the wild dogs and the captive singing dogs are close relatives of the Australian dingo, and relatively distant relatives of domestic dogs. The New Guinea singing dogs closest domesticated relatives are East Asian breeds including the chow chow, Akita and shiba inu, according to Science. This connection suggests that the singing dog may have split off from the ancestors of these Asian breeds some 3,500 years ago when humans and a few canine companions migrated to Oceania, per the Times.

Ostrander tells the Times that the genome of the wild singing dogs offers researchers a missing piece that we didnt really have before, that may help clarify the history of dog domestication.

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Thought to Be Extinct, New Guinea's Singing Dogs Found Alive in the Wild - Smithsonian Magazine

Online Roulette for Real Money – Best 3 Casinos to Win Big

People love to gamble, and technology has made it possible to visit an online casino, where they can sign up for free. Playing American roulette is what a lot of people enjoy. Since they can play American roulette from wherever they are, as long as they have access to the Internet, they are happy.

When a person wants to play roulette online, it is a good idea for them to read up on the rules and ways that they can play it better in order to win more money. Here are the 3 best sites to play roulette online:

Whenever a person first goes on the site, they will need to open an account. This is free to do, and their information is protected. If they should have any difficulties, the customer service agents can assist them right away. They are trained and experienced at what they do. When they handle an issue, they are kind and courteous to their customers.

All of these casinos handle deposits and withdrawals with the utmost of care. They protect an individuals privacy at all times. Customers are given options for deposits and withdrawals so they can find one that works the best for their situation.

When people gamble online, they will want to pay attention to any promotions that may be offered to them by the casino. Since these promotions can help the gambler to earn more money, they should always be aware of what they are. They can benefit from them as they return to gamble on the sites over and over again.

People love the roulette wheel because it is a game of chance. Hitting big on the roulette wheel can mean winning some nice money. A gambler will want to know how the roulette wheel works so they have a better chance of winning. An online roulette game is thrilling and fun for many gamblers.

The atmosphere of the online casinos is a vibrant one. They have intense graphics and excellent, sound systems. People get excited when they visit their sites. The atmosphere leads the gambler to have an exciting experience as they try their luck at winning. For a gambler, online sites are fascinating to them, they enjoy coming back to try their luck again and again.

Playing the online roulette game can be something that people want to do on a regular basis. Now, they can play the online roulette game from wherever they need to go for business or pleasure. All they need is a laptop or cell phone to access the Internet, and they will be all set to have an exciting experience gambling online. It is something that people enjoy, and many of them win big money.

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Online Roulette for Real Money - Best 3 Casinos to Win Big

Roulette – Online Roulette games you can play for free, no …

Get ready for the biggest thrill of your life once you get rolling with the exciting game of roulette. Before playing in a game it is important to understand some things about roulette odds. There are several versions of roulette that have slightly different rules involved. This makes the game accessible and entertaining for every type of player out there. Most importantly, there are two different types of roulette wheels, one called the American roulette and one is European roulette wheel.

While there are two major variations of roulette, there are more similarities than not. To play in a game of roulette, first locate the roulette table layout. This green table is situated next to the roulette wheel and has loads of spots for you to take your best bet. Of all the choices, there are two categories of bets called the "inside bets" or "outside bets". The inside bets are the higher payout because the odds are high. Inside bets include a bet on a single lucky number, splits, or small combinations of numbers on the table layout. Place an outside bet for a lower payout but better odds. Outside bets include a bet on red or black, even or odd, a certain dozen of numbers, or a column.

The roulette table is managed by a croupier and a dealer. The roulette wheel is always spinning and anyone in the action needs to place their uniquely colored chip on the table. Once the dealer calls an end to the bets, you better have your stake on the table. If you are a winner, then you are paid out according to the inside or outside payout.

With the different varieties of roulette, let's talk about how to play American roulette since it is the simpler version to play. The American roulette wheel has numbers 1-36 and includes a 0 and a 00 slot. It is played in North America, as its name suggests. When the ball drops into its final slot, let's hope that it doesn't land in the 0 or 00. The house has two chances to take the win and American roulette puts the house edge at 5.26%.

European roulette only has the one zero slot on the wheel cutting the house edge in half to 2.7%. European roulette is played in most European countries, of course. There are a couple of rules that may be instituted in the game that are great news to improve your odds against the house. In European roulette, you may find the "en prison" or "la partage rules". If the ball lands in the zero slot in the roulette spin, "la partage" rules allow the player to receive half of their bet back. If you are playing at a table using the "en prison" rule, that means the bet will be "imprisoned" when the ball lands on the zero for one more spin. If your bet hits on the next spin, then your bet is released from prison with no winnings.

There are endless ways for you to play and enjoy roulette. With choices from European and American roulette and now the online versions offer unrivaled convenience. If you are feeling hesitant, the free online roulette rooms are a great way to experience the rules and flow of play. After hundreds of years, roulette has no evidence of shrinking popularity. Give it a whirl and you can easily see why!

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Roulette - Online Roulette games you can play for free, no ...

From Japan to the world – IAG – Inside Asian Gaming

Japans Sega Sammy Creation is getting in early by developing slot titles that incorporate some elements of popular Japanese pachislot games.

As Japan continues to ponder the prospect of an integrated resort industry, Sega Sammy is working to bring creative EGM content to the world, installing the first Virtua Fighter video slot machine at Vietnams Macau Gaming Club in June. IAG spoke with Masaki Yamamoto, Vice President, Executive Officer and Managing Director of the Research and Development Division at Sega Sammy Creation the casino sales company under Sega Sammy Holdings and Hayato Sasaki, who serves as Director of Sales.

Shintaro Kamimura: How has Sega Sammy Creation been affected by COVID-19?Hayato Sasaki: Due to so many casinos not accepting customers at this time, we havent been getting orders from casinos. Also, since the Japanese government has been moving slowly [due to COVID-19], it caused delays in various projects. However, I think the same is true for all manufacturers.

SK: What was the reason for going with the Virtua Fighter slot motif this time?Masaki Yamamoto: Virtua Fighter is the first 3D fighting game and has sold all over the world, so we thought it would be well-received all over the world. We started with about 3,000 title options, and this is one of the dozen or so that we narrowed it down to.The target demographic for Virtua Fighter and House of the Dead is people in their 40s to 50s who actually played the games back in the day, and since they still have new series coming out, we hope it will also resonate with the younger generations.

SK: It really has the game aspects that you find in Japanese pachislot.HS: Its a 5-line game, but is made with amusement elements like pachislot. The casinos have actually come to us saying the free game portion is too long, and theyre worried its hurting their income. The next problem is finding the balance between the casinos income and the pachislot-type amusement that even we want to play.MY: But we arent giving up on this at all. We believe that this sort of gaming element is necessary to allow customers to enjoy casinos for long periods of time. We plan to incorporate both operator and user opinions to continue making improvements.

SK: Do you think pachislot-type gaming aspects will hit big once there are IRs in Japan?HS: Yes. In that sense we really want to take the lead [in a Japanese IR]. Of course, other companies are developing products, but we are developing in Japan, so we dont want to lose in a Japanese IR. Naturally we are also developing products with existing pachislot themes. We should probably be able to make that announcement in six months or so.MY: There will be at most three IRs in Japan. Even if each location has 3,000 slot machines, thats a total of 9,000. Its a very small market. However, if certain machines become popular in Japan and customers leave with the impression that Japan has great game content, thats an opportunity to expand sales to overseas markets. I think it will help give Japanese manufacturers strength. Were adding aspects to meet the needs of the market and also things that we personally want to do.

SK: This is the idea of new CEO Scott Winzeler?MY: Thats right. He always says, Start with the core, then we can do what we want. He started out in Japanese pachislot at IGT, so I think he understands that side of things very well, and his way of thinking is a really good reference.

SK: Can you tell us about your electronic table games?HS: The Maximum Fortune series features baccarat, roulette and Sic Bo. You can even squeeze the baccarat cards with the squeeze button. In Sic Bo you can squeeze the dice with a button too. In roulette, there is a pachislot-type feature that gives prior notification of a win by the dragon ramp lighting up on the screen for certain hits.

SK: Most of your table games are released under the Genesis Slant cabinet and slots under the Genesis Star cabinet. Weve heard there is very little need for repairs?HS: The rate of breakdowns is extremely low. The maintenance company actually told us they need more to do. We are quite confident in our cabinet products after making tens of millions of pachinko, pachislot, amusement and consumer products. That is our biggest sales pitch.

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From Japan to the world - IAG - Inside Asian Gaming

Total and Macquarie to build 2GW floating offshore wind farm portfolio – Power Technology

]]]]]]>]]]]>]]> Total and Macquarie aim to develop the largest floating wind projects to date. Credit: Matt Artz on Unsplash.

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Total and Macquaries Green Investment Group have teamed up to develop five floating offshore wind projects in South Korea with a capacity of up to 2GW.

As part of the 50/50 partnership, the two companies have agreed to develop floating offshore wind projects off the eastern and southern coasts near Ulsan and South Jeolla provinces of the country.

Total chairman and CEO Patrick Pouyann said: Our entry in the floating offshore wind segment in South Korea is in line with Totals strategy to profitably develop renewable energy worldwide and contribute to our net-zero ambition.

We strongly believe in the potential of floating offshore wind in South Korea, which will play a key role in achieving the countrys renewables objectives.

An on-site wind data collection campaign has already begun, and the two companies intend to begin construction of the first 500MW project by the end of 2023.

Last July, South Korea unveiled its Green New Deal plan through which it aims to develop renewable energy that reach at least 20% of the power mix by 2030, including 12GW of offshore wind capacities.

The Total/Macquarie partnership will become effective from autumn 2020, subject to regulatory approvals and satisfaction of other conditions precedent.

In June this year, Macquarie-owned Green Investment Group and Enso Energy formed a joint venture to develop a subsidy-free solar and battery portfolio in the UK.

In another development, a consortium consisting of Korea Hydro & Nuclear Power, Alpha Asset Management, Sprott Korea Investment, Hana Financial Investment, Korea Investment & Securities, and a group of Korean infrastructure investors have signed definitive agreements to acquire a 49.9% stake in a portfolio of wind generating assets in the US.

The 852MW wind portfolio includes four operating wind farms. These include the 218MW Bishop Hill wind farm and the 226MW California Ridge wind farm, both located in Illinois.

The remaining two facilities are the 201MW Prairie Breeze wind farm in Nebraska, and the 207MW Rattlesnake wind farm in Texas.

Brookfield Renewable and Invenergy has sold its interests in these projects for an enterprise value of approximately $1.5bn.

The deal, which is subject to satisfaction of customary closing conditions, is expected to close in the fourth quarter of 2020. Brookfield will retain 50.1% equity interest in the portfolio.

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Total and Macquarie to build 2GW floating offshore wind farm portfolio - Power Technology

Heat wave on the way: Potential for offshore wind event next week – The Union of Grass Valley

A heat wave is headed this way and the National Weather Service has issued an excessive heat watch through the entire Sacramento and San Joaquin Valleys up to the Sierra crest.

Temperatures will be highest over the holiday weekend, with high to very high heat risk forecast for Sunday and Monday.

The reason for this unseasonable heat wave for this time of year is the level of high pressure in the upper ridge is forecast to strengthen, the sinking air associated with that will cause temps to rise 15 to 20 degrees above normal for this time of year, National Weather Service Meteorologist Scott Rowe said.

Today, the warming trend begins with highs around 90 degrees, 92 on Friday, 97 forecast for Saturday, 102 Sunday, and 99 Monday.

Its unexpected to see heat waves of this magnitude late in the season, Rowe said. We are in September now.

Looking ahead to the extended forecast, temps do tend to decline on Tuesday, when we start the new work week, Rowe said.

Wildfire smoke wafting over areas of Northern California will also play a part in high and low temperatures, potentially keeping daytime highs from reaching their forecasted extremes.

Smoke acts as a cloud, Rowe said in reference to the ability for smoke to reduce high temperatures. On the other hand, for the overnight lows, it would help keep temperatures in. It mutes the extremes a little in the end.

Overnight lows are expected to stay in the upper 70s and low 80s, providing little overnight moisture recovery and increased wildfire risk.

A potential offshore north wind event is being eyed for Tuesday or Wednesday, though confidence at this point is low.

We may be transferring from heat concerns to fire weather concerns rather quickly, Rowe said.

Its still a little bit early to tell, Rowe said of the potential north to northeast wind event. It may be a little too early to discern. Depends on how cool it gets in the great basin.

If the offshore wind event were to materialize, the weather service foresees anywhere from 15 to 20 mph winds on Tuesday or Wednesday.

Going to have to get through the heat wave to see what kind of models we will have, Rowe said.

With the holiday weekend coming up the National Weather Service wants to remind people to stay hydrated and take care of themselves in the heat.

If folks do decide to go out on a hike or any trails or area waterways, there may not be that much relief from the heat for those coming up from the valley.

To contact Multimedia Reporter Elias Funez, email efunez@theunion.com or call 530-477-4230.

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Heat wave on the way: Potential for offshore wind event next week - The Union of Grass Valley