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Biochemistry / Cellular respiration / Clostridiaceae / Keto acids / Dicarboxylic acids / Clostridium / Pyruvate kinase / Malate dehydrogenase / Pyruvic acid / Chemistry / Biology / EC 1.1.1


Redirecting carbon flux through exogenous pyruvate kinase to achieve high ethanol yields in Clostridium thermocellum
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Document Date: 2013-11-15 15:39:59


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City

Caiazza / Davenport / Cambridge / Hanover / /

Company

USA Mascoma Corporation / Sigma-Aldrich / Elsevier Inc. / Novogy Inc. / ADP / J. Ind. / Mascoma Corporation / Tripathi S.A. / Dme / /

Country

United States / Lebanon / /

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Event

FDA Phase / /

Facility

BioEnergy Science Center / Cummings Hall / Dartmouth College / /

IndustryTerm

chemical productions / low carbon media / biotechnology / online version / fermentation products / sterile low carbon media / synthetic uracil dropout media / electron carrier / gas chromatography system / described fermentation products / chemicals / web version / /

NaturalFeature

United States Minor Outlying Islands / /

Organization

Research Center / U.S. Department of Energy / USA BioEnergy Science Center / Thayer School of Engineering / Dartmouth College / /

Person

Nat / A. Joe Shaw / Christopher D. Herring / Joe Shaw / Daniel G. Olson / Lee R. Lynd / Foust / /

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Position

T.D. / Corresponding author / celluloseutilizing specialist / bifunctional ADHE enzyme operative / /

Product

acetic acid / pYD03 / /

ProgrammingLanguage

EC / /

ProvinceOrState

South Dakota / Tennessee / North Carolina / Massachusetts / New Hampshire / /

PublishedMedium

Environmental Research / /

Technology

biotechnology / cloning / aeration / ATG / Laser / gas chromatography system / biofuels / Gene expression / bioprocessing / genotype / recombination / /

URL

www.elsevier.com/locate/ymben / http /

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