<div><p>E1784K is the most common mixed long QT syndrome/Brugada syndrome mutant in the cardiac voltage-gated sodium channel Na<sub>V</sub>1.5. E1784K shifts the midpoint of the channel conductance-voltage relationship to more depolarized membrane potentials and accelerates the rate of channel fast inactivation. The depolarizing shift in the midpoint of the conductance curve in E1784K is exacerbated by low extracellular pH. We tested whether the E1784K mutant shifts the channel conductance curve to more depolarized membrane potentials by affecting the channel voltage-sensors. We measured ionic currents and gating currents at pH 7.4 and pH 6.0 in <i>Xenopus laevis</i> oocytes. Contrary to our expectation, the movement of gating charges is sh...
Voltage-dependent potassium (Kv) channels provide the repolarizing power that shapes the action pote...
AbstractCut-open recordings from Xenopus oocytes expressing either nerve (PN1) or skeletal muscle (S...
The transmembrane voltage needed to open different voltage-gated K (Kv) channels differs by up to 50...
E1784K is the most common mixed long QT syndrome/Brugada syndrome mutant in the cardiac voltage-gate...
E1784K is the most common mixed long QT syndrome/Brugada syndrome mutant in the cardiac voltage-gate...
The cardiac voltage-gated sodium channel, NaV1.5, is responsible for the phase 0 depolarization of t...
AbstractLow pH depolarizes the voltage-dependence of cardiac voltage-gated sodium (NaV1.5) channel a...
Functional eukaryotic voltage-gated Na(+) (NaV) channels comprise four domains (DI-DIV), each contai...
Voltage-gated sodium (NaV) channels generate the action potential upstroke in most electrically exci...
S4-type voltage-sensor (VS) domains are common to voltage-gated ion channels (VGCs) and voltage-sens...
AbstractSlow inactivation determines the availability of voltage-gated sodium channels during prolon...
This dissertation addressed the question of sodium channel gating. The study began with an investiga...
Motion transmission from voltage sensors to inactivation gates is an important problem in the genera...
The fourth segment of domain 4 (S4/D4) in Na+ channels is a voltage sensor especially implicated in ...
Heterologous expression of sodiumchannel mutations in hypokalemic periodic paralysis reveals 2 varia...
Voltage-dependent potassium (Kv) channels provide the repolarizing power that shapes the action pote...
AbstractCut-open recordings from Xenopus oocytes expressing either nerve (PN1) or skeletal muscle (S...
The transmembrane voltage needed to open different voltage-gated K (Kv) channels differs by up to 50...
E1784K is the most common mixed long QT syndrome/Brugada syndrome mutant in the cardiac voltage-gate...
E1784K is the most common mixed long QT syndrome/Brugada syndrome mutant in the cardiac voltage-gate...
The cardiac voltage-gated sodium channel, NaV1.5, is responsible for the phase 0 depolarization of t...
AbstractLow pH depolarizes the voltage-dependence of cardiac voltage-gated sodium (NaV1.5) channel a...
Functional eukaryotic voltage-gated Na(+) (NaV) channels comprise four domains (DI-DIV), each contai...
Voltage-gated sodium (NaV) channels generate the action potential upstroke in most electrically exci...
S4-type voltage-sensor (VS) domains are common to voltage-gated ion channels (VGCs) and voltage-sens...
AbstractSlow inactivation determines the availability of voltage-gated sodium channels during prolon...
This dissertation addressed the question of sodium channel gating. The study began with an investiga...
Motion transmission from voltage sensors to inactivation gates is an important problem in the genera...
The fourth segment of domain 4 (S4/D4) in Na+ channels is a voltage sensor especially implicated in ...
Heterologous expression of sodiumchannel mutations in hypokalemic periodic paralysis reveals 2 varia...
Voltage-dependent potassium (Kv) channels provide the repolarizing power that shapes the action pote...
AbstractCut-open recordings from Xenopus oocytes expressing either nerve (PN1) or skeletal muscle (S...
The transmembrane voltage needed to open different voltage-gated K (Kv) channels differs by up to 50...