Vadlakonda L, Indracanti M, Kalangi S, Gayatri B, Naidu N, Reddy A
J Diabetes Metab Disord. 2021; 19(2):1731-1775.
PMID: 33520860
PMC: 7843791.
DOI: 10.1007/s40200-020-00566-5.
Agnihotri S, Zadeh G
Neuro Oncol. 2015; 18(2):160-72.
PMID: 26180081
PMC: 4724176.
DOI: 10.1093/neuonc/nov125.
Ward P, Thompson C
Cancer Cell. 2012; 21(3):297-308.
PMID: 22439925
PMC: 3311998.
DOI: 10.1016/j.ccr.2012.02.014.
Bechtel W, Abrahamsen A
J Hist Biol. 2007; 40(1):1-33.
PMID: 17993169
DOI: 10.1007/s10739-006-9103-7.
Pearson D, Tubbs P
Biochem J. 1967; 105(3):953-63.
PMID: 16742571
PMC: 1198413.
DOI: 10.1042/bj1050953.
Oxaloacetate and malate transport by plant mitochondria.
Zoglowek C, Kromer S, Heldt H
Plant Physiol. 1988; 87(1):109-15.
PMID: 16666083
PMC: 1054707.
DOI: 10.1104/pp.87.1.109.
Effects of Light and Inhibitors on Glutamate Metabolism in Leaf Discs of Vicia faba L: Sources of ATP for Glutamine Synthesis and Photoregulation of Tricarboxylic Acid Cycle Metabolism.
Jordan B, Givan C
Plant Physiol. 1979; 64(6):1043-7.
PMID: 16661089
PMC: 543188.
DOI: 10.1104/pp.64.6.1043.
A Theory of Auxin Action Involving Coenzyme A.
Leopold A, Guernsey F
Proc Natl Acad Sci U S A. 1953; 39(11):1105-11.
PMID: 16589384
PMC: 1063918.
DOI: 10.1073/pnas.39.11.1105.
The effect of acute alkalosis on renal metabolism of ammonia in cirrhotics.
OWEN E, TYOR M, Giordano D
J Clin Invest. 1962; 41:1139-44.
PMID: 14482894
PMC: 291021.
DOI: 10.1172/JCI104566.
The free energy change associated with the hydrolysis of the thiol ester bond of acetyl coenzyme A.
Burton K
Biochem J. 1955; 59(1):44-6.
PMID: 14351138
PMC: 1216085.
DOI: 10.1042/bj0590044.
THE EQUILIBRIUM OF THE REACTION CATALYSED BY CITRATE OXALOACETATE-LYASE.
Tate S, Datta S
Biochem J. 1965; 94:470-7.
PMID: 14348207
PMC: 1206530.
DOI: 10.1042/bj0940470.
The effects of fluoroacetate, malonate and acid-base balance on the renal disposal of citrate.
Crawford M
Biochem J. 1963; 88:115-20.
PMID: 14023730
PMC: 1203858.
DOI: 10.1042/bj0880115.
Biochemistry of sporulation. I. Metabolism of acetate by vegetative and sporulating cells.
Hanson R, Srinivasan V, HALVORSON H
J Bacteriol. 1963; 85:451-60.
PMID: 13952646
PMC: 278153.
DOI: 10.1128/jb.85.2.451-460.1963.
Some effects of light on the interconversion of metabolites in green leaves.
Graham D, Walker D
Biochem J. 1962; 82:554-60.
PMID: 13901009
PMC: 1243495.
DOI: 10.1042/bj0820554.
The effects of changes in acid-base balance on urinary citrate in the rat.
Crawford M, Milne M, Scribner B
J Physiol. 1959; 149:413-23.
PMID: 13812721
PMC: 1363098.
DOI: 10.1113/jphysiol.1959.sp006348.
The excretion of I-malic acid in relation to the tricarboxylic acid cycle in the kidney.
Vishwakarma P, LOTSPEICH W
J Clin Invest. 1959; 38(2):414-23.
PMID: 13631074
PMC: 293170.
DOI: 10.1172/JCI103816.
[Effect of disease, of food absorption, of pantothenic acid and carbohydrate administration on the acetylization capacity of the human system].
Bogner K, ENGLHARDT-GOLKEL A, PIRNER F, WOLLER I
Klin Wochenschr. 1958; 36(7):301-7.
PMID: 13550815
DOI: 10.1007/BF01480668.
Physiological studies on acid metabolism. 4. Phosphoenolpyruvic carboxylase activity in extracts of Crassulacean plants.
Walker D
Biochem J. 1957; 67(1):73-9.
PMID: 13471513
PMC: 1200110.
DOI: 10.1042/bj0670073.
[Coenzyme A, a link between energy furnishing and consuming reactions in cellular metabolism].
Lynen F
Klin Wochenschr. 1957; 35(5):213-22.
PMID: 13429810
DOI: 10.1007/BF01482768.
Properties and biological significance of choline acetylase.
REISBERG R
Yale J Biol Med. 1957; 29(4):403-35.
PMID: 13423368
PMC: 2603836.