Abstract
1. The influence of cations on the active transport into cells of rat-brain-cortex slices of l-histidine, an amino acid that is not metabolized by this tissue, has been studied. 2. Like other amino acids, l-histidine accumulated in the cells in the presence of glucose in concentrations up to over double that in the incubation medium. 3. The active transport of l-histidine was highest in a medium containing Ca(2+) (3mm). The addition of K(+) (27mm) led to a marked decrease in the intracellular concentration of l-histidine, though the oxygen uptake of the slices was higher. 4. The active l-histidine transport was inhibited by NH(4) (+). The inhibitory effect increased with the NH(4) (+) concentration, being about 25% at 8mm, 65% at 20mm, and 90% at 27 and 50mm. The oxygen uptake of the brain slices was depressed by only 25% by the highest NH(4) (+) concentration used, and less by lower concentrations.
Keywords
AMINO ACID METABOLISM
AMMONIUM COMPOUNDS
BIOLOGICAL TRANSPORT
BRAIN CHEMISTRY
CALCIUM
CEREBRAL CORTEX
EXPERIMENTAL LAB STUDY
GLUCOSE
HISTIDINE
IONS
METABOLISM
PHARMACOLOGY
POTASSIUM
RATS
SODIUM
MeSH Terms
Amino Acids/metabolism
Ammonium Compounds
Biological Transport
Biological Transport, Active
Brain Chemistry
Calcium
Cations
Cerebral Cortex
Glucose
Histidine
Ions
Metabolism
Pharmacology
Potassium
Quaternary Ammonium Compounds
Rats
Research
Sodium
Chemicals
Amino Acids
Ammonium Compounds
Cations
Ions
Quaternary Ammonium Compounds
Histidine
Sodium
Glucose
Potassium
Calcium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
DEALMEIDA D F
CHAIN E B
POCCHIARI F
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15 references, click to expand
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