K+ and Cl− conductances in the apical membrane from secreting oxyntic cells are concurrently inhibited by divalent cations
- 1 October 1985
- journal article
- research article
- Published by Springer Nature in The Journal of Membrane Biology
- Vol. 83 (3), 261-272
- https://doi.org/10.1007/bf01868700
Abstract
This study concerns the properties of rapid K+ and Cl transport pathways that are present in the (H++K+)-ATPase membrane from stimulated, and secreting, gastric oxyntic cells. Ion permeabilities in the isolated stimulation-associated vesicles were monitored via the rates of H+ efflux under conditions of exclusive H+/K+ counterflux or H+−Cl co-efflux, as well as by comparison of equilibration rates for86Rb and36Cl under conditions of equilibrium exchange and unidirectional salt flux. These latter studies suggest that Rb+ and Cl pathways are conductive and independent. In spite of the functional independence of the ion pathways, several divalent cations inhibit Rb+ and Cl isotopic exchange as well as the H+ efflux that is dependent on either K+ or anion (Cl, SCN, NO2) fluxes. Zn2+ is the more potent inhibitor, reducing by 50% the sensitive component of K+, Cl, and NO2 fluxes at about 20 μm; Mn2+ has a similar effect at 200 μm. Ni2+ and Co2+ were roughly equipotent to Mn2+ while Mg2+ and Ca2+ had not inhibitory effect. These results suggest that the stimulation-induced permeabilities, while functioning independently, may be physically linked, i.e., residing within a single entity. In similar studies carried out in (H++K+)-ATPase vesicles obtained from nonstimulated cells, no vestiges of sensitivity to the inhibitory divalent cations could be detected. The implications of these findings for the physiology of the oxyntic cell in the context of a model for membrane fusion are discussed.This publication has 36 references indexed in Scilit:
- Influence of surface charge and transmembrane potential on rubidium-86 efflux of human red blood cellsThe Journal of Membrane Biology, 1984
- Volume-induced increase of K+ and Cl− permeabilities in Ehrlich ascites tumor cells. Role of internal Ca2+The Journal of Membrane Biology, 1984
- Anion exchange in oxyntic cell apical membrane: Relationship to thiocyanate inhibition of acid secretionThe Journal of Membrane Biology, 1983
- Vanadate binding to the gastric hydrogen(1+)-transporting, potassium(1+)-stimulated ATPase and inhibition of the enzyme's catalytic and transport activitiesBiochemistry, 1983
- Conduction and selectivity in potassium channelsThe Journal of Membrane Biology, 1983
- Functional differences between K+‐ATPase rich membranes isolated from resting or simulated rabbit fundic mucosaFEBS Letters, 1981
- Water and salt permeability of gastric vesiclesThe Journal of Membrane Biology, 1980
- Structure of oxyntic cell membranes during conditions of rest and secretion of HCl as revealed by freeze‐fractureThe Anatomical Record, 1980
- Cation transport by gastric H+∶K+ ATPaseThe Journal of Membrane Biology, 1977
- A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye bindingAnalytical Biochemistry, 1976