Regulation at the Phosphoenolpyruvate Branchpoint in Azotobacter vinelandii : Phosphoenolpyruvate Carboxylase
Author:
Affiliation:
1. Biochemistry Division, Department of Chemistry, University of California, Los Angeles, California 90024
Abstract
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Link
https://journals.asm.org/doi/pdf/10.1128/jb.106.1.31-36.1971
Reference20 articles.
1. The anaplerotic fixation of carbon dioxide by Escherichia coli;Ashworth J. M.;Proc. Roy. Soc. (London) B,1966
2. The role of phosphopyruvate carboxylase in Escherichia coli;Ashworth J. M.;Biochem. J.,1965
3. The energy charge of the adenylate pool as a regulatory parameter. Interaction with feedback modifiers;Atkinson D. E.;Biochemistry,1968
4. Regulation of enzyme function. Annu;Atkinson D. E.;Rev. Microbiol.,1969
5. Energy charge and protein synthesis. Control of acylamino transfer ribonucleic acid synthases;Brenner M.;J. Biol. Chem.,1970
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1. Anaplerotic Function of Phosphoenolpyruvate Carboxylase in Bradyrhizobium japonicum USDA110;Current Microbiology;2011-04-10
2. The PEP—pyruvate—oxaloacetate node as the switch point for carbon flux distribution in bacteria: We dedicate this paper to Rudolf K. Thauer, Director of the Max-Planck-Institute for Terrestrial Microbiology in Marburg, Germany, on the occasion of his 65th birthday;FEMS Microbiology Reviews;2005-09
3. Inactivation of pycA, encoding pyruvate carboxylase activity, increases poly-?-hydroxybutyrate accumulation in Azotobacter vinelandii on solid medium;Applied Microbiology and Biotechnology;2004-05-04
4. Analysis of gluconeogenic and anaplerotic enzymes in Campylobacter jejuni: an essential role for phosphoenolpyruvate carboxykinase;Microbiology;2002-03-01
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