Chloride (or bicarbonate)-dependent copper uptake through the anion exchanger in human red blood cells
- 1 October 1990
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Cell Physiology
- Vol. 259 (4) , C570-C576
- https://doi.org/10.1152/ajpcell.1990.259.4.c570
Abstract
The initial rate of Cu2+ uptake in human red blood cells was measured by atomic absorption. About 80% of Cu2+ uptake was inhibited by 4,4'-diisothiocyanostilbene-2,2'-disulfonic acid (DIDS) concentrations greater than 5-10 microM. DIDS-sensitive Cu2+ uptake required the presence of external HCO3- or external Cl-. Cl- strongly stimulated Cu2+ uptake following a Michaelis-like function, with apparent dissociation constant (KCl) of 72 +/- 9.4 (SD) mM (n = 6 experiments). HCO3- stimulated DIDS-sensitive Cu2+ uptake following a Michaelis-like function, with apparent dissociation constant (Kbic) of 10 +/- 1.9 (SD) mM (n = 4 experiments). Maximal rates (of Cl(-)- or HCO3(-)-stimulated Cu2+ uptake) were nonadditive. DIDS-sensitive Cu2+ uptake was not modified by physiological concentrations of phosphate or sulfate. Conversely, it was strongly inhibited by physiological concentrations of L-histidine and cysteine (at a Cu2+ concentration of 100 microM, these physiological ligands exhibited KHis and KCys of 50 and 80 microM, respectively). By using a copper-selective electrode, we found that at pH 7-7.4 copper is associated with OH-, particularly in the form of Cu(OH)2 complexes. In conclusion, the anion exchanger is the major transport mechanism for red blood cell Cu2+ uptake. The translocating species can be the monovalent anion complexes of copper with OH-, Cl-, and/or HCO3-.This publication has 20 references indexed in Scilit:
- Evidence for a major route for zinc uptake in human red blood cells: [ZN(HCO3)2CL]−influx through the [CI−/HCO3−] anion exchangerJournal of Cellular Physiology, 1989
- Copper Deficiency in HumansAnnual Review of Nutrition, 1988
- Effects of copper and zinc status of rats on the concentration of copper and zinc in the erythrocyte membraneNutrition Research, 1986
- CO2-stimulated NaCl absorption in the mouse renal cortical thick ascending limb of Henle. Evidence for synchronous Na +/H+ and Cl-/HCO3- exchange in apical plasma membranes.The Journal of general physiology, 1982
- Evidence for anionic cation transport of lithium, sodium and potassium across the human erythrocyte membrane induced by divalent anions.The Journal of Physiology, 1978
- Lithium transport pathways in human red blood cells.The Journal of general physiology, 1978
- Combined Effects of Digitalis Therapy and of Plasma Bicarbonate on Human Red Cell Sodium and PotassiumScandinavian Journal of Clinical and Laboratory Investigation, 1974
- Human Red Cell Sodium and Potassium in Metabolic AlkalosisScandinavian Journal of Clinical and Laboratory Investigation, 1974
- The interaction of sodium and potassium with the sodium pump in red cellsThe Journal of Physiology, 1973
- Metabolism of copper in Wilson's disease and in normal subjectsThe American Journal of Medicine, 1954