Metabolic engineering of Escherichia coli for high-specificity production of isoprenol and prenol as next generation of biofuels

Background:
The isopentenols, including isoprenol and prenol, are excellent alternative fuels. However, they are not compounds largely accumulated in natural organism. The need for the next generation of biofuels with better physical and chemical properties impels us to develop biosynthetic routes for the production of isoprenol and prenol from renewable sugar. In this study, we use the heterogenous mevalonate-dependent (MVA) isoprenoid pathway for the synthesis of isopentenyl pyrophosphate (IPP) and dimethylallyl pyrophosphate (DMAPP) intermediates, and then convert IPP and DMAPP to isoprenol and prenol, respectively.
Results:
A mevalonate titer of 1.7 g/L was obtained by constructing an efficient MVA upper pathway in engineered E. coli. Different phosphatases and pyrophosphatases were investigated for their abilities in hydrolyzing the IPP and DMAPP. Consequently, ADP-ribose pyrophosphatase was found to be an efficient IPP and DMAPP hydrolase. Moreover, ADP-ribose pyrophosphatase from Bacillus subtilis (BsNudF) exhibited a equivalent substrate specificity towards IPP and DMAPP, while ADP-ribose pyrophosphatase from E. coli (EcNudF) presented a high substrate preference for DMAPP. Without the expression of any phosphatases or pyrophosphatases, a background level of isopentenols was synthesized. When the endogenous pyrophosphatase genes (EcNudF and yggV) that were capable of enhancing the hydrolyzation of the IPP and DMAPP were knocked out, the background level of isopentenols was still obtained. Maybe the synthesized IPP and DMAPP were hydrolyzed by some unknown hydrolases of E. coli. Finally, 1.3 g/L single isoprenol was obtained by blocking the conversion of IPP to DMAPP and employing the BsNudF, and 0.2 g/L ~80% prenol was produced by employing the EcNudF. A maximal yield of 12% was achieved in both isoprenol and prenol producing strains.
Conclusions:
To the best of our knowledge, this is the first successful report on high-specificity production of isoprenol and prenol by microbial fermentation. Over 1.3 g/L isoprenol achieved in shake-flask experiments represents a quite encouraging titer of higher alcohols. In addition, the substrate specificities of ADP-ribose pyrophosphatases were determined and successfully applied for the high-specificity synthesis of isoprenol and prenol. Altogether, this work presents a promising strategy for high-specificity production of two excellent biofuels, isoprenol and prenol.Source:
http://www.biotechnologyforbiofuels.com/content/6/1/57

Space Station Rocket Launch 'A Success'

A company contracted by US space agency Nasa to deliver supplies to the International Space Station has launched its first test rocket.

High winds forced Orbital Sciences Corporation to scrap the launch of the unmanned Antares rocket from Virginia on Saturday, but a new attempt was made on Sunday.

It blasted off from Wallops Island on Virginia's Eastern Shore.

About 10 minutes after the launch, Orbital Sciences declared the test a success after observing a practice payload reach orbit and safely separate from the rocket.

Nasa administrator Charles Bolden said in a statement: "Congratulations to Orbital Sciences and the Nasa team that worked alongside them for the picture-perfect launch of the Antares rocket.

"In addition to providing further evidence that our strategic space exploration plan is moving forward, this test also inaugurates America's newest spaceport capable of launching to the space station, opening up additional opportunities for commercial and government users."

The Antares rocket, which is an expendable launch system, is designed to put payloads weighing up to 5,000 kg (11,000 lb) into low-Earth orbit.

Orbital intends to use the Antares to launch its Cygnus spacecraft on the ISS resupply missions.

The Antares rocket was known during early development as the Taurus II, but was renamed in 2011 after the star of the same name.

Orbital now plans to launch another Antares carrying a Cygnus spacecraft in June.

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Space Station Rocket Launch 'A Success'

Marshall Space Flight Center director will give UAHuntsville spring commencement address

HUNTSVILLE, Alabama - Marshall Space Flight Center Director Patrick Scheuermann will deliver the spring commencement address at the University of Alabama in Huntsville. The commencement will be May 4 at 10 a.m. at Propst Arena in downtown Huntsville's Von Braun Center.

UAH expects to award 860 diplomas - 630 bachelor's degrees, 194 master's degrees and 24 doctoral degrees. Scheuermann will receive an honorary doctorate from UAH during the ceremony.

Scheuermann came to Huntsville in September 2012 to take over what is one of NASA's top field centers. Marshall has 6,000 government and contractor support workers and a budget of more than $2 billion. It is leading development of the Space Launch System, NASA's new heavy-lift rocket for exploration beyond low-Earth orbit.

Before coming to Marshall, Scheuermann headed NASA's engine-testing Stennis Space Center in Bay St. Louis, Miss. He is a native of New Orleans and a graduate of the University of New Orleans. Scheuermann and his wife, the former Sarah Melissa Lee of Pearl River County, Miss., have a son and daughter, Chandler and Christina.

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Marshall Space Flight Center director will give UAHuntsville spring commencement address

NASA’s Kepler Mission Discovers Its Smallest ‘Habitable Zone’ Planets to Date – Video


NASA #39;s Kepler Mission Discovers Its Smallest #39;Habitable Zone #39; Planets to Date
NASA #39;s Kepler mission has discovered two new planetary systems that include three super-Earth-size planets in the "habitable zone," the range of distance fro...

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NASA's Kepler Mission Discovers Its Smallest 'Habitable Zone' Planets to Date - Video

UAS UAV Video Support Flight for NASA MSFC Mighty Eagle Robotic Lander Demonstration – Video


UAS UAV Video Support Flight for NASA MSFC Mighty Eagle Robotic Lander Demonstration
Take-off is at 0:35. This is a video from a GoPro camera attached to our unmanned aerial system (UAS) quadcopter UAV during a coordinated flight with the NAS...

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UAS UAV Video Support Flight for NASA MSFC Mighty Eagle Robotic Lander Demonstration - Video