High resistance epithelia actively transport sodium from the luminal side to the blood. Aldosterone and vasopressin stimulate this sodium transport system; the diuretic drug amiloride inhibits it in a reversible fashion. The first step in the transepithelial transport of Na+ is the facilitated diffusion of Na+ across the apical membrane via Na+-specific, amiloride-sensitive channels. We report here the first direct measurements of single, amiloride-sensitive Na+ channel activity. The channel was isolated after incorporation of purified apical membrane vesicles from A6 cells into planar lipid bilayers. The channel had the following characteristics: single-channel conductance ranged from 4 to 80 pS at 200 mM NaCl; it was perfectly cation-sele...
1. Conductance of heterotrimeric rat epithelial Na+ channels (α,β,γ-rENaCs) for Li+ and Na+ in plana...
An amiloride-sensitive Na+ channel is found in the apical plasma membrane of high resistance, Na+ tr...
Diversity and regulation of amiloride-sensitive Na+ channels. Amiloride-sensitive Na+ channels play ...
Single epithelial Na+ channels incorporated into planar lipid bilayers were studied to determine the...
Single epithelial Na+ channels incorporated into planar lipid bilayers were studied to determine the...
The activity of epithelial Na(+) selective channels is modulated by various factors, with growing ev...
Amiloride-sensitive currents in the mouse cortical collecting duct cell line, M-1, were characterize...
Amiloride-sensitive currents in the mouse cortical collecting duct cell line, M-1, were characterize...
Confluent M-1 cells show electrogenic Na+ absorption and possess an amiloride-sensitive Na(+)-conduc...
The amiloride-sensitive epithelial sodium channel constitutes the rate-limiting step for sodium reab...
Confluent M-1 cells show electrogenic Na+ absorption and possess an amiloride-sensitive Na(+)-conduc...
Sodium transport across the apical membrane, via amiloride sensitive sodium channels, is the limitin...
Electrical potential-driven 22Na+ fluxes were measured in membrane vesicles prepared from TBM-18(c12...
Amiloride-sensitive Na+ channels are expressed at the apical membrane of high resistance, Na+-transp...
Amiloride-sensitive Na+ channels are expressed at the apical membrane of high resistance, Na+-transp...
1. Conductance of heterotrimeric rat epithelial Na+ channels (α,β,γ-rENaCs) for Li+ and Na+ in plana...
An amiloride-sensitive Na+ channel is found in the apical plasma membrane of high resistance, Na+ tr...
Diversity and regulation of amiloride-sensitive Na+ channels. Amiloride-sensitive Na+ channels play ...
Single epithelial Na+ channels incorporated into planar lipid bilayers were studied to determine the...
Single epithelial Na+ channels incorporated into planar lipid bilayers were studied to determine the...
The activity of epithelial Na(+) selective channels is modulated by various factors, with growing ev...
Amiloride-sensitive currents in the mouse cortical collecting duct cell line, M-1, were characterize...
Amiloride-sensitive currents in the mouse cortical collecting duct cell line, M-1, were characterize...
Confluent M-1 cells show electrogenic Na+ absorption and possess an amiloride-sensitive Na(+)-conduc...
The amiloride-sensitive epithelial sodium channel constitutes the rate-limiting step for sodium reab...
Confluent M-1 cells show electrogenic Na+ absorption and possess an amiloride-sensitive Na(+)-conduc...
Sodium transport across the apical membrane, via amiloride sensitive sodium channels, is the limitin...
Electrical potential-driven 22Na+ fluxes were measured in membrane vesicles prepared from TBM-18(c12...
Amiloride-sensitive Na+ channels are expressed at the apical membrane of high resistance, Na+-transp...
Amiloride-sensitive Na+ channels are expressed at the apical membrane of high resistance, Na+-transp...
1. Conductance of heterotrimeric rat epithelial Na+ channels (α,β,γ-rENaCs) for Li+ and Na+ in plana...
An amiloride-sensitive Na+ channel is found in the apical plasma membrane of high resistance, Na+ tr...
Diversity and regulation of amiloride-sensitive Na+ channels. Amiloride-sensitive Na+ channels play ...