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PMID: 5667259 Published · ppublish English Journal Article

The effects of varying the cellular and extracellular concentrations of sodium and potassium ions on the uptake of glycine by mouse ascites-tumour cells in the presence and absence of sodium cyanide.

The Biochemical journal ·Vol. 108 ·No. 3 ·1968-07-00 ·Pages 489-98

Eddy AA

Abstract

1. Tumour cells were starved to deplete them of ATP and transferred to 0.9mm-glycine in Ringer solutions containing 2mm-sodium cyanide and various Na(+) and K(+) concentrations. The uptake of glycine then usually reached a peak by about 10min. 2. When cellular [Na(+)] and extracellular [Na(+)] were each about 30m-equiv./l., the maximum amount of glycine absorbed increased between 1.2- and 3.0-fold on lowering extracellular [K(+)] from 128 to 10m-equiv./l. 3. When extracellular [Na(+)] was 150m-equiv./l., the ratio, R, of the cellular to extracellular glycine concentrations increased progressively, from near 1 to about 9, when cellular [Na(+)] was lowered from 120 to 40m-equiv./l. 4. When cellular [Na(+)] was almost constant, either at 45 or 70m-equiv./l., R fell about 14-fold when extracellular [Na(+)] varied from 150 to 16m-equiv./l. 5. Values of R near 0.2 were found when cellular [Na(+)] was about four times as large as extracellular [Na(+)]. 6. R fell about threefold when the cells were put with 12mm- instead of 0.9mm-glycine. 7. The results were taken to imply that, under these conditions, the spontaneous movements of both Na(+) and K(+) across the cell membrane, down their respective concentration gradients, served to concentrate the glycine in the tumour cells (Christensen's hypothesis).

MeSH Terms
Animals Biological Transport Cyanides/pharmacology Glycine/metabolism In Vitro Techniques Kinetics Mice Neoplasms, Experimental/metabolism Oxygen Consumption Potassium/pharmacology Sodium/pharmacology Time Factors Water/metabolism
Chemicals
Cyanides Water Sodium Potassium Glycine
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Eddy A A
References (7)
7 references, click to expand
  1. Relation of amino acid transport to sodium-ion concentration.
    Biochim Biophys Acta. 1965 Nov 29;109(2):620-2 PMID: 5867563
  2. The effects of sodium ions and potassium ions on glycine uptake by mouse ascites-tumour cells in the presence and absence of selected metabolic inhibitors.
    Biochem J. 1967 Jun;103(3):863-76 PMID: 6072273
  3. A net gain of sodium ions and a net loss of potassium ions accompanying the uptake of glycine by mouse ascites-tumour cells in the presence of sodium cyanide.
    Biochem J. 1968 Jun;108(2):195-206 PMID: 5665884
  4. Amino acid concentration by a free cell neoplasm; relations among amino acids.
    J Biol Chem. 1952 Sep;198(1):1-15 PMID: 12999712
  5. Potassium migration and amino acid transport.
    J Biol Chem. 1958 Dec;233(6):1479-84 PMID: 13610858
  6. Hypothesis for mechanism of intestinal active transport of sugars.
    Fed Proc. 1962 Nov-Dec;21:891-5 PMID: 14023681
  7. GLYCINE TRANSPORT BY HEMOLYZED AND RESTORED PIGEON RED CELLS.
    Biochemistry. 1964 Jun;3:795-9 PMID: 14211618
Article Info
Journal
The Biochemical journal
Abbr.
Biochem J
ISSN
0264-6021
Published
1968-07-00
Pages
489-98
Language
English
Region
England
NLM ID
2984726R
PMCID
PMC1198835
Subset
IM
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