The activity of epithelial Na(+) selective channels is modulated by various factors, with growing evidence that membrane lipids also participate in the regulation. In the present study, Triton X-100 extracts of whole cells and of apical membrane-enriched preparations from cultured A6 renal epithelial cells were floated on continuous-sucrose-density gradients. Na(+) channel protein, probed by immunostaining of Western blots, was detected in the high-density fractions of the gradients (between 18 and 30% sucrose), which contain the detergent-soluble material but also in the lighter, detergent-resistant 16% sucrose fraction. Single amiloride-sensitive Na(+) channel activity, recorded after incorporation of reconstituted proteoliposomes into li...
Complex organisms take sodium from the external environment to achieve and maintain extracellular vo...
Single epithelial Na+ channels incorporated into planar lipid bilayers were studied to determine the...
The amiloride-sensitive Na+ channel constitutes the rate-limiting step for Na+ transport in epitheli...
High resistance epithelia actively transport sodium from the luminal side to the blood. Aldosterone ...
The highly selective amiloride-sensitive epithelial sodium channel is expressed in the distal part o...
The highly selective amiloride-sensitive epithelial sodium channel is expressed in the distal part o...
Sodium transport across the apical membrane, via amiloride sensitive sodium channels, is the limitin...
Amiloride-sensitive Na+ channels are expressed at the apical membrane of high resistance, Na+-transp...
The amiloride-sensitive epithelial sodium channel constitutes the rate-limiting step for sodium reab...
Amiloride-sensitive Na+ channels are expressed at the apical membrane of high resistance, Na+-transp...
The lipid environment of the epithelial sodium channel (ENaC) and its possible association with so-c...
Porcine thyroid epithelial cells cultured as a monolayer with their apical membranes facing the medi...
The epithelial Na(+) channel (ENaC) is present in the apical membrane of "tight" epithelia in the di...
The epithelial Na(+) channel (ENaC) is present in the apical membrane of "tight" epithelia in the di...
Electrical potential-driven 22Na+ fluxes were measured in membrane vesicles prepared from TBM-18(c12...
Complex organisms take sodium from the external environment to achieve and maintain extracellular vo...
Single epithelial Na+ channels incorporated into planar lipid bilayers were studied to determine the...
The amiloride-sensitive Na+ channel constitutes the rate-limiting step for Na+ transport in epitheli...
High resistance epithelia actively transport sodium from the luminal side to the blood. Aldosterone ...
The highly selective amiloride-sensitive epithelial sodium channel is expressed in the distal part o...
The highly selective amiloride-sensitive epithelial sodium channel is expressed in the distal part o...
Sodium transport across the apical membrane, via amiloride sensitive sodium channels, is the limitin...
Amiloride-sensitive Na+ channels are expressed at the apical membrane of high resistance, Na+-transp...
The amiloride-sensitive epithelial sodium channel constitutes the rate-limiting step for sodium reab...
Amiloride-sensitive Na+ channels are expressed at the apical membrane of high resistance, Na+-transp...
The lipid environment of the epithelial sodium channel (ENaC) and its possible association with so-c...
Porcine thyroid epithelial cells cultured as a monolayer with their apical membranes facing the medi...
The epithelial Na(+) channel (ENaC) is present in the apical membrane of "tight" epithelia in the di...
The epithelial Na(+) channel (ENaC) is present in the apical membrane of "tight" epithelia in the di...
Electrical potential-driven 22Na+ fluxes were measured in membrane vesicles prepared from TBM-18(c12...
Complex organisms take sodium from the external environment to achieve and maintain extracellular vo...
Single epithelial Na+ channels incorporated into planar lipid bilayers were studied to determine the...
The amiloride-sensitive Na+ channel constitutes the rate-limiting step for Na+ transport in epitheli...