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Biochemistry / Metabolic pathways / Metabolism / Thioesters / Propionyl-CoA / Glyoxylate cycle / Citric acid cycle / Isocitrate lyase / Succinyl-CoA / Chemistry / Coenzymes / Biology


Demonstration of the ethylmalonyl-CoA pathway by using 13C metabolomics Re´mi Peyrauda, Patrick Kiefera, Philipp Christena, Stephane Massoub, Jean-Charles Portaisb,c, and Julia A. Vorholta,1
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City

Methanol / Zurich / Eppendorf / Toulouse / London / Freiburg / /

Company

Cambridge Isotope Laboratories / Thermo Fisher Scientific / Evonik Degussa GmbH / Sanyo / /

Country

Germany / Switzerland / France / /

/

Facility

Boston University / University of Freiburg / /

IndustryTerm

travel grant / biotechnology / reaction network / aux gas flow rate / reagents/analytic tools / given metabolic network / Sheath gas flow rate / metabolic networks / metabolic network / industrial biotechnology / chemicals / energy / /

Organization

Swiss Academy of Engineering Science / Centre National / Eidgeno¨ssiche Technische Hochschule Zurich / Boston University / Boston / Institut National / Laboratory for BioSystems & Process Engineering / European Union / Vie Universite / University of Freiburg / European Regional Development Fund / /

Person

Stephane Massoub / Philipp Christena / Paul Sabatier / Van Dien / Julia A. Vorholta / Germaine de Stae / Jean-Charles Portaisb / Echanges Internationaux / Patrick Kiefera / Arch Microbiol / /

Position

Author / Dunstan PM / z-gradient BBI probe head / /

Product

glycine / /

ProgrammingLanguage

C / /

ProvinceOrState

Mississippi / Massachusetts / /

PublishedMedium

la Recherche / /

Region

North Rhine / /

Technology

biotechnology / bioremediation / condensation / metabolic networks / metabolomics / aeration / Midi / /

URL

www.pnas.org͞cgi͞doi͞10.1073͞pnas.0810932106 / www.pnas.org/cgi/content/full / /

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