AMINO ACID TRANSPORT IN BRAIN CORTEX SLICES: III. THE UTILIZATION OF ENERGY FOR TRANSPORT
- 1 November 1962
- journal article
- research article
- Published by Canadian Science Publishing in Canadian Journal of Biochemistry and Physiology
- Vol. 40 (11) , 1603-1618
- https://doi.org/10.1139/o62-179
Abstract
When rat brain cortex slices are incubated with amino acids in the presence of various sugars, the ratio of amino acid transported to the steady-state level of ATP (termed the transport quotient) is constant. The actual amount of ATP maintained is greatest with glucose and mannose but somewhat less with fructose and galactose. Certain α-keto acids (pyruvate, oxalacetate, α-ketoglutarate, or glutamate which can give rise to α-ketoglutarate) also support glycine transport but with a lesser efficiency. Fumarate, malate, and succinate have little ability to support amino acid transport.The transport supported by pyruvate is particularly resistant to the action of agents which markedly reduce the transport supported by glucose as substrate. These agents include dinitrophenol, digoxin, and uranyl ions. Inhibitory effects are obtained with high concentrations of potassium ions whether the substrate is glucose or pyruvate.These results are interpreted in terms of pyruvate dismutation and acetate thiokinase leading to ATP production and in terms of intracellular localization of ATP.Keywords
This publication has 32 references indexed in Scilit:
- THE GENERAL METABOLISM OF THE BRAIN IN VIVOPublished by Elsevier ,1957
- Phosphates of brain during in vitro metabolism: effects of oxygen, glucose, glutamate, glutamine, and calcium and potassium saltsBiochemical Journal, 1952
- Electrical stimulation in vitro of the metabolism of glucose by mammalian cerebral cortexBiochemical Journal, 1951
- Glutamic Acid and Glucose As Substrates for Mammalian BrainJournal of Mental Science, 1951
- Metabolic response in vitro to electrical stimulation of sections of mammalian brainBiochemical Journal, 1951
- SIGNIFICANCE OF GLUTAMIC ACID FOR THE METABOLISM OF NERVOUS TISSUEPhysiological Reviews, 1950
- The bacterial surface II. Effect of uranyl chloride on the electrophoretic mobility of bacteriaBiochimica et Biophysica Acta, 1950
- REGULATORY MECHANISMS OF CELLULAR RESPIRATIONThe Journal of general physiology, 1948
- The relationship of the cell surface to metabolism. I. Phosphatases in the cell surface of living yeast cellsJournal of Cellular and Comparative Physiology, 1948
- Choline ester formation in, and choline esterase activities of, tissues in vitroBiochemical Journal, 1936