High-conductance Ca(2+)-activated K+ channels from rat skeletal muscle were incorporated into planar lipid bilayers, and the channel kinetics were studied with a high internal Ca2+ concentration (Cai). Raising the Cai is known to increase the channel open probability. This effect is due to an increases in openings frequency and duration, and saturates at a Cai around 100 microM. Raising the Cai also increases the occurrence of less frequent but very long (> 5 s) shut events. The mechanism underlying this slow kinetic process was studied. Raising Cai above 100 microM does not further increase the frequency of the long shut events. This was not consistent with the hypothesis that the long closures result from a classical channel-block mechani...
Calcium-activated potassium channels from cultured rat skeletal muscle were treated with the protein...
AbstractAlthough a considerable number of studies have characterized inactivation and facilitation o...
K+-selective ion channels from a mammalian brain synaptosomal membrane preparation were inserted int...
High-conductance Ca(2+)-activated K+ channels from rat skeletal muscle were incorporated into planar...
Voltage-dependent Ca++-activated K+ channels from rat skeletal muscle were reconstituted into planar...
Using Ba2 1 as a probe, we performed a detailed characterization of an external K 1 binding site l...
The interaction of Ca2+ and Ba2+ with a Ca2+-activated K+ channel from rabbit skeletal muscle membra...
The gating kinetics of a Ca2+-activated K+ channel from adult rat muscle plasma membrane are studied...
Intracellular Ca2+ can inhibit the activity of voltage-gated Ca channels by modulating the rate of c...
We applied a fast concentration jump system to produce step changes in Ca2+ concentration [( Ca2+]i)...
Intracellular Ca2+ can inhibit the activity of voltage-gated Ca channels by modulating the rate of c...
Large unitary conductance Ca2+-activated K+ channels from smooth muscle membrane were incorporated i...
AbstractThe Ca2+ sensitivity of large conductance Ca2+- and voltage-activated K+ channels (BKV,Ca) h...
We studied the effects of permeant ions on the gating of the large conductance Ca(2+)-activated K+ c...
Ion channels play an integral role in regulating the movement of ions across cell membranes. In addi...
Calcium-activated potassium channels from cultured rat skeletal muscle were treated with the protein...
AbstractAlthough a considerable number of studies have characterized inactivation and facilitation o...
K+-selective ion channels from a mammalian brain synaptosomal membrane preparation were inserted int...
High-conductance Ca(2+)-activated K+ channels from rat skeletal muscle were incorporated into planar...
Voltage-dependent Ca++-activated K+ channels from rat skeletal muscle were reconstituted into planar...
Using Ba2 1 as a probe, we performed a detailed characterization of an external K 1 binding site l...
The interaction of Ca2+ and Ba2+ with a Ca2+-activated K+ channel from rabbit skeletal muscle membra...
The gating kinetics of a Ca2+-activated K+ channel from adult rat muscle plasma membrane are studied...
Intracellular Ca2+ can inhibit the activity of voltage-gated Ca channels by modulating the rate of c...
We applied a fast concentration jump system to produce step changes in Ca2+ concentration [( Ca2+]i)...
Intracellular Ca2+ can inhibit the activity of voltage-gated Ca channels by modulating the rate of c...
Large unitary conductance Ca2+-activated K+ channels from smooth muscle membrane were incorporated i...
AbstractThe Ca2+ sensitivity of large conductance Ca2+- and voltage-activated K+ channels (BKV,Ca) h...
We studied the effects of permeant ions on the gating of the large conductance Ca(2+)-activated K+ c...
Ion channels play an integral role in regulating the movement of ions across cell membranes. In addi...
Calcium-activated potassium channels from cultured rat skeletal muscle were treated with the protein...
AbstractAlthough a considerable number of studies have characterized inactivation and facilitation o...
K+-selective ion channels from a mammalian brain synaptosomal membrane preparation were inserted int...