Role of Na+/H+ exchange in the control of intracellular pH and cell membrane conductances in frog skin epithelium.
Open Access
- 1 December 1988
- journal article
- research article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 92 (6) , 793-810
- https://doi.org/10.1085/jgp.92.6.793
Abstract
Ion-sensitive microelectrodes and current-voltage analysis were used to study intracellular pH (pHi) regulation and its effects on ionic conductances in the isolated epithelium of frog skin. We show that pHi recovery after an acid load is dependent on the operation of an amiloride-sensitive Na+/H+ exchanger localized at the basolateral cell membranes. The antiporter is not quiescent at physiological pHi (7.1-7.4) and, thus, contributes to the maintenance of steady state pHi. Moreover, intracellular sodium ion activity is also controlled in part by Na+ uptake via the exchanger. Intracellular acidification decreased transepithelial Na+ transport rate, apical Na+ permeability (PNa) and Na+ and K+ conductances. The recovery of these transport parameters after the removal of the acid load was found to be dependent on pHi regulation via Na+/H+ exchange. Conversely, variations in Na+ transport were accompanied by changes in pHi. Inhibition of Na+/K+ ATPase by ouabain produced covariant; decreases in pHi and PNa, whereas increases in Na+ transport, occurring spontaneously or after aldosterone treatment, were highly correlated with intracellular alkalinization. We conclude that cytoplasmic H+ activity is regulated by a basolateral Na+/H+ exchanger and that transcellular coupling of ion flows at opposing cell membranes can be modulated by the pHi-regulating mechanism.This publication has 6 references indexed in Scilit:
- Direct inhibition of epithelial Na+ channels by a pH-dependent interaction with calcium, and by other divalent ionsThe Journal of Membrane Biology, 1987
- Intracellular ion activities in frog skin in relation to external sodium and effects of amiloride and/or ouabain.The Journal of Physiology, 1984
- Calcium reduces the sodium permeability of luminal membrane vesicles from toad bladder. Studies using a fast-reaction apparatus.The Journal of general physiology, 1983
- Sodium Transport Inhibition by Amiloride Reduces Basolateral Membrane Potassium Conductance in Tight EpitheliaScience, 1982
- Ouabain on active transepithelial sodium transport in frog skin: studies with microelectrodes.The Journal of general physiology, 1979
- Intracellular calcium and the regulation of sodium transport in the frog skinProceedings of the Royal Society of London. B. Biological Sciences, 1978