AbstractRecombinant sodium channel α subunits expressed in Xenopus oocytes display an anomalously slow rate of inactivation that arises from channels that predominantly exist in a slow gating mode [1,2]. Co-expression of Na− channel β1 subunit with the human skeletal muscle Na+ channel α subunit increases the Na+ current and induces normal gating behavior in Xenopus laevis oocytes. The effects of the β1 subunit can be explained by an allosterically induced conformational switch of the α subunit protein that occurs upon binding the β1 subunit. This binding alters the free energy barriers separating distinct conformational states of the channel. The results illustrate a fundamental modulation of ion channel gating at the molecular level, and ...
AbstractCo-expression of cloned sodium channel β1 -subunit with the rat skeletal muscle-subunit (αμI...
Ion permeation and channel gating are classically considered independent processes, but site-specifi...
The intracellular linker between domains III and IV of the voltage-gated Na channel mediates fast in...
AbstractRecombinant sodium channel α subunits expressed in Xenopus oocytes display an anomalously sl...
AbstractThe α subunit of the human skeletal muscle Na+ channel recorded from cell-attached patches y...
AbstractThe α subunit of the human skeletal muscle Na+ channel recorded from cell-attached patches y...
AbstractSkeletal and heart muscle excitability is based upon the pool of available sodium channels a...
AbstractCo-expression of cloned sodium channel β1 -subunit with the rat skeletal muscle-subunit (αμI...
Mutations in the human skeletal muscle Na+ channel underlie the autosomal dominant disease hyperkale...
This dissertation addressed the question of sodium channel gating. The study began with an investiga...
AbstractCut-open recordings from Xenopus oocytes expressing either nerve (PN1) or skeletal muscle (S...
The adult rat skeletal muscle Na+ channel alpha-subunit (mu 1) appears to gate modally with two kine...
AbstractNa channels inactivate quickly after opening, and the very highly positively charged cytopla...
Voltage-gated sodium channels play a crucial role in the upstroke of action potentials in electrical...
Voltage-gated sodium channels play a crucial role in the upstroke of action potentials in electrical...
AbstractCo-expression of cloned sodium channel β1 -subunit with the rat skeletal muscle-subunit (αμI...
Ion permeation and channel gating are classically considered independent processes, but site-specifi...
The intracellular linker between domains III and IV of the voltage-gated Na channel mediates fast in...
AbstractRecombinant sodium channel α subunits expressed in Xenopus oocytes display an anomalously sl...
AbstractThe α subunit of the human skeletal muscle Na+ channel recorded from cell-attached patches y...
AbstractThe α subunit of the human skeletal muscle Na+ channel recorded from cell-attached patches y...
AbstractSkeletal and heart muscle excitability is based upon the pool of available sodium channels a...
AbstractCo-expression of cloned sodium channel β1 -subunit with the rat skeletal muscle-subunit (αμI...
Mutations in the human skeletal muscle Na+ channel underlie the autosomal dominant disease hyperkale...
This dissertation addressed the question of sodium channel gating. The study began with an investiga...
AbstractCut-open recordings from Xenopus oocytes expressing either nerve (PN1) or skeletal muscle (S...
The adult rat skeletal muscle Na+ channel alpha-subunit (mu 1) appears to gate modally with two kine...
AbstractNa channels inactivate quickly after opening, and the very highly positively charged cytopla...
Voltage-gated sodium channels play a crucial role in the upstroke of action potentials in electrical...
Voltage-gated sodium channels play a crucial role in the upstroke of action potentials in electrical...
AbstractCo-expression of cloned sodium channel β1 -subunit with the rat skeletal muscle-subunit (αμI...
Ion permeation and channel gating are classically considered independent processes, but site-specifi...
The intracellular linker between domains III and IV of the voltage-gated Na channel mediates fast in...