Membrane potential of aortic endothelial cells under resting conditions is dominated by inward-rectifier K+ channels belonging to the Kir 2 family. Regulation of endothelial Kir by membrane cholesterol was studied in bovine aortic endothelial cells by altering the sterol composition of the cell membrane. Our results show that enriching the cells with cholesterol decreases the Kir current density, whereas depleting the cells of cholesterol increases the density of the current. The dependence of the Kir current density on the level of cellular cholesterol fits a sigmoid curve with the highest sensitivity of the Kir current at normal physiological levels of cholesterol. To investigate the mechanism of Kir regulation by cholesterol, endogenous ...
Depletion of membrane cholesterol and substitution of endogenous cholesterol with its structural ana...
Activation of volume-regulated anion current (VRAC) plays a key role in the maintenance of cellular ...
AbstractThis study has investigated the effect of cellular cholesterol on membrane deformability of ...
AbstractMembrane potential of aortic endothelial cells under resting conditions is dominated by inwa...
Membrane potential of aortic endothelial cells under resting conditions is dominated by inward-recti...
Membrane potential of aortic endothelial cells under resting conditions is dominated by inward-recti...
Inwardly rectifying K+ (Kir) channels are responsible for maintaining endothelial membrane potential...
AbstractCholesterol is one of the major lipid components of membranes in mammalian cells. In recent ...
AbstractCholesterol is one of the major lipid components of membranes in mammalian cells. In recent ...
AbstractCholesterol is the major sterol component of all mammalian plasma membranes. Recent studies ...
Cholesterol is the major sterol component of all mammalian cell plasma membranes and plays a critica...
Cholesterol is the major sterol component of all mammalian cell plasma membranes and plays a critica...
Activation of volume-regulated anion current (VRAC) plays a key role in the maintenance of cellular ...
Activation of volume-regulated anion current (VRAC) plays a key role in the maintenance of cellular ...
AbstractWe have shown earlier that Kir2 channels are suppressed by the elevation of membrane cholest...
Depletion of membrane cholesterol and substitution of endogenous cholesterol with its structural ana...
Activation of volume-regulated anion current (VRAC) plays a key role in the maintenance of cellular ...
AbstractThis study has investigated the effect of cellular cholesterol on membrane deformability of ...
AbstractMembrane potential of aortic endothelial cells under resting conditions is dominated by inwa...
Membrane potential of aortic endothelial cells under resting conditions is dominated by inward-recti...
Membrane potential of aortic endothelial cells under resting conditions is dominated by inward-recti...
Inwardly rectifying K+ (Kir) channels are responsible for maintaining endothelial membrane potential...
AbstractCholesterol is one of the major lipid components of membranes in mammalian cells. In recent ...
AbstractCholesterol is one of the major lipid components of membranes in mammalian cells. In recent ...
AbstractCholesterol is the major sterol component of all mammalian plasma membranes. Recent studies ...
Cholesterol is the major sterol component of all mammalian cell plasma membranes and plays a critica...
Cholesterol is the major sterol component of all mammalian cell plasma membranes and plays a critica...
Activation of volume-regulated anion current (VRAC) plays a key role in the maintenance of cellular ...
Activation of volume-regulated anion current (VRAC) plays a key role in the maintenance of cellular ...
AbstractWe have shown earlier that Kir2 channels are suppressed by the elevation of membrane cholest...
Depletion of membrane cholesterol and substitution of endogenous cholesterol with its structural ana...
Activation of volume-regulated anion current (VRAC) plays a key role in the maintenance of cellular ...
AbstractThis study has investigated the effect of cellular cholesterol on membrane deformability of ...