TRIPHOSPHOPYRIDINE NUCLEOTIDE LINKED ISOCITRIC DEHYDROGENASE IN BACTERIA
Author:
Affiliation:
1. Department of Bacteriology, Washington University School of Medicine, St. Louis, Missouri
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Link
https://journals.asm.org/doi/pdf/10.1128/jb.64.4.443-453.1952
Reference14 articles.
1. Isocitric dehydrogenase and glutamic acid synthesis in animal tissues;ADLER E.;Biochem. J.,1939
2. Studies on the mechanism of acetate oxidation by Escherichia coli;AJL S. J.;J. Biol. Chem.,1951
3. On the mechanism of carbon dioxide replacement in heterotrophic metabolism;AJL S. J.;J. Bact.,1949
4. On the oxidative decarboxylation of alphaketoglutaric acid;AJI;Iowa State Coll. J. Sci.,1950
5. The occurrence of the tricarboxylic acid cycle in yeast;FOULKES E. C.;Biochem. J.,1951
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1. Cross-Pathway Regulation: Histidine-Mediated Control of Histidine, Tryptophan, and Arginine Biosynthetic Enzymes in Neurospora crassa;Journal of Bacteriology;1974-09
2. Characterization of the highly active isocitrate (NADP+) dehydrogenase of Azotobacter vinelandii;Biochimica et Biophysica Acta (BBA) - Enzymology;1970-12
3. OXIDATION OF ORGANIC ACIDS;Bacterial Physiology and Metabolism;1969
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5. Physiological and Biochemical Studies on Streptomycin Dependence in Escherichia coli;Journal of General Microbiology;1962-06-01
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