Voltage-dependent block by amiloride and other monovalent cations of apical Na channels in the toad urinary bladder
- 1 June 1984
- journal article
- research article
- Published by Springer Nature in The Journal of Membrane Biology
- Vol. 80 (2), 153-165
- https://doi.org/10.1007/bf01868771
Abstract
Inhibition of the Na conductance of the apical membrane of the toad urinary bladder by amiloride, alkali cations and protons was voltage dependent. Bladders were bathed with a high K-sucrose serosal medium to reduce series basal-lateral resistance and potential difference. Transepithelial current-voltage relationships were measured over a voltage range of ±200 mV with a voltage ramp of frequency 0.5 to 1 Hz. Na channelI–V relationships were obtained by subtraction of currents measured in the presence of maximal doses of amiloride (10 to 20 μm). With submaximal doses of amiloride (0.05 to 0.5 μm), the degree of inhibition of the Na channel current (I Na) increased as the mucosal potential was made more positive. The data can be reasonably well explained by assuming that amiloride blocks Na transport by binding to a site which senses ∼12% of the transmembrane voltage difference.I Na was reduced in a qualitatively similar voltage-dependent manner by mucosal K, Rb, Cs and Tl (∼100mm) and by mucosal H (∼1mm). Block by these cations cannot be explained in terms of interactions with a single membrane-voltage-sensing site; a model in which there are two or more blocking sites in series provides a better description of the data. On the other hand, amiloride block was reduced competitively by mucosal Na and K, suggesting that occupation of the channel by one cation excludes occupancy by the others. ADH and ouabain also reduce the apparent affinity of amiloride for its blocking site. Thus, intracellular Na may also compete with amiloride for occupancy of the channel.This publication has 29 references indexed in Scilit:
- Conduction and selectivity in potassium channelsThe Journal of Membrane Biology, 1983
- Ion selectivity of the apical membrane Na channel in the toad urinary bladderThe Journal of Membrane Biology, 1982
- Na+ transport and flux ratio through apical Na+ channels in toad bladderNature, 1982
- Blockage of squid axon potassium conductance by internal tetra-N-alkylammonium ions of various sizesBiophysical Journal, 1981
- Concentration dependence of currents through single sodium-selective pores in frog skinNature, 1979
- Interaction between cell sodium and the amiloride-sensitive sodium entry step in rabbit colonThe Journal of Membrane Biology, 1978
- Does intracellular sodium modify membrane permeability to sodium ions?Nature, 1977
- Sodium-Specific Membrane Channels of Frog Skin Are Pores: Current Fluctuations Reveal High TurnoverScience, 1977
- Amiloride: a potent inhibitor of sodium transport across the toad bladderThe Journal of Physiology, 1968
- Stimulation of sodium transport in toad bladder by acidification of mucosal mediumAmerican Journal of Physiology-Legacy Content, 1964