Characteristics of Chloride Transport in Human Red Blood Cells
Open Access
- 1 February 1973
- journal article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 61 (2), 185-206
- https://doi.org/10.1085/jgp.61.2.185
Abstract
The efflux of chloride-36 from human erythrocytes under steady-state conditions is a saturable process that is competitively inhibited by bicarbonate and noncompetitively inhibited by acetate. This chloride self-exchange flux is reversibly dependent on the pH of the medium between 5.7 and 9.6 with a maximum flux at pH 7.8. The increase in chloride flux between pH 5.7 and 7.8 is inexplicable by the fixed charge hypothesis. The interpretations are made that chloride transport in human erythrocytes is carrier mediated, that bicarbonate utilizes the same transport mechanism, and that the mechanism can be titrated with hydrogen ions into less functional forms for chloride transport.Keywords
This publication has 14 references indexed in Scilit:
- On the mechanism of inhibition of the sulfate transfer across the human erythrocyte membraneBiochimica et Biophysica Acta (BBA) - Biomembranes, 1972
- Temperature dependence of chloride, bromide, iodide, thiocyanate and salicylate transport in human red cellsThe Journal of Physiology, 1972
- Ouabain-insensitive effects of metabolism on ion and water content of red blood cellsAmerican Journal of Physiology-Legacy Content, 1971
- The mechanism of anion translocation and pH equilibration in erythrocytesBiochimica et Biophysica Acta (BBA) - Biomembranes, 1970
- Effect of some monovalent anions on chloride and sulphate permeability of human red cellsThe Journal of Physiology, 1970
- Anion permeability of the red blood cellThe Science of Nature, 1970
- Obligate Cation Exchanges in Red CellsNature, 1967
- CARRIER MECHANISMS IN THE MOVEMENT OF IONS ACROSS POROUS AND LIQUID ION EXCHANGER MEMBRANESAnnals of the New York Academy of Sciences, 1966
- BIOSYNTHESIS OF GLUTATHIONE IN HUMAN BLOOD CELLS1962
- The rate of gas exchange between blood cells and serumThe Journal of Physiology, 1931