Serosal Na/Ca exchange and H+ and Na+ transport by the turtle and toad bladders
- 1 June 1982
- journal article
- research article
- Published by Springer Nature in The Journal of Membrane Biology
- Vol. 70 (2) , 135-146
- https://doi.org/10.1007/bf01870223
Abstract
A Na/Ca exchange system has been described in the plasma membrane of several tissues and seems to regulate the concentration of calcium in cytosol. Replacement of extracellular Na by sucrose increases calcium uptake into and decreases calcium efflux from the cell, leading to an increase in cytosolic calcium. The effect of an increase in cytosolic calcium mediated by the Na/Ca exchange system on H+ and Na transport in the turtle and toad bladder was investigated by replacing serosal Na isosmotically by sucrose or choline. Replacement of serosal by sucrose was associated with a significant inhibition of H+ secretion or Na transport which was reversible by addition of NaCl. Replacement of mucosal Na by sucrose failed to alter H+ secretion. Removal of serosal Na was associated with a significant increase in45Ca uptake which could be blocked by pretreatment with lanthanum chloride. Pretreatment with lanthanum chloride blunted the inhibitory effect of replacement of serosal Na by sucrose on H+ and Na transport, thus suggesting that the increase in calcium uptake and the inhibition of transport are causally related. Under anaerobic conditions the rate of H+ or Na transport are linked to the rate of lactate production. The inhibition of Na or H+ transport by removal of serosal Na was accompanied by a proportional decrease in lactate production, thus suggesting that an increase in cytosolic calcium does not inhibit transport by uncoupling glycolysis from transport. Replacement of serosal Na by sucrose did not alter the force of the H+ or Na pump but led to an increase in resistance of the active pathway of H+ and Na transport. The inhibition of Na transport by replacement of serosal Na with sucrose could be reversed by addition of amphotericin B, an agent which increases luminal permeability to Na, thus suggesting that decreased Na entry across the apical membrane is the mechanism responsible for the inhibition of Na transport. The results of the present studies strongly suggest that an increase in cytosolic calcium through the serosal Na/Ca exchange system inhibits H+ and Na transport in the turtle and toad bladder probably by increasing the resistance of the luminal membrane.This publication has 36 references indexed in Scilit:
- Coupling between H+ transport and anaerobic glycolysis in turtle urinary bladder: Effects of inhibitors of H+ ATPaseThe Journal of Membrane Biology, 1981
- Effect of quinidine on Na, H+, and water transport by the turtle and toad bladdersThe Journal of Membrane Biology, 1980
- Cholinergic inhibition of urinary acidification by the turtle bladderKidney International, 1980
- Microelectrode studies in toad urinary bladder epithelium. effects of Na concentration changes in the mucosal solution on equivalent electromotive forces.The Journal of general physiology, 1980
- Reversible inhibition by lanthanum of the hydrosmotic response to serosal hypertonicity in toad urinary bladderThe Journal of Membrane Biology, 1979
- Intracellular calcium and the regulation of sodium transport in the frog skinProceedings of the Royal Society of London. B. Biological Sciences, 1978
- Effects of ionophore A23187 on base-line and vasopressin-stimulated sodium transport in the toad bladder.Journal of Clinical Investigation, 1977
- Resolution of parameters in the equivalent electrical circuit of the sodium transport mechanism across toad skinThe Journal of Membrane Biology, 1976
- Determination of the driving force of the Na+ pump in toad bladder by means of vasopressinThe Journal of Membrane Biology, 1971
- Energetics of Anaerobic Sodium Transport by the Fresh Water Turtle BladderThe Journal of general physiology, 1965