AbstractLow pH depolarizes the voltage-dependence of cardiac voltage-gated sodium (NaV1.5) channel activation and fast inactivation and destabilizes the fast-inactivated state. The molecular basis for these changes in protein behavior has not been reported. We hypothesized that changes in the kinetics of voltage sensor movement may destabilize the fast-inactivated state in NaV1.5. To test this idea, we recorded NaV1.5 gating currents in Xenopus oocytes using a cut-open voltage-clamp with extracellular solution titrated to either pH 7.4 or pH 6.0. Reducing extracellular pH significantly depolarized the voltage-dependence of both the QON/V and QOFF/V curves, and reduced the total charge immobilized during depolarization. We conclude that dest...
S4-type voltage-sensor (VS) domains are common to voltage-gated ion channels (VGCs) and voltage-sens...
Voltage-gated ion channels are crucial for electrical signaling in living organisms. They are compos...
Voltage-gated Na+ channels exhibit two forms of inactivation, one form (fast inactivation) takes eff...
AbstractLow pH depolarizes the voltage-dependence of cardiac voltage-gated sodium (NaV1.5) channel a...
Voltage-gated sodium (NaV) channels generate the action potential upstroke in most electrically exci...
E1784K is the most common mixed long QT syndrome/Brugada syndrome mutant in the cardiac voltage-gate...
<div><p>E1784K is the most common mixed long QT syndrome/Brugada syndrome mutant in the cardiac volt...
The cardiac voltage-gated sodium channel, NaV1.5, is responsible for the phase 0 depolarization of t...
AbstractLow pH depolarizes the voltage dependence of voltage-gated sodium (NaV) channel activation a...
E1784K is the most common mixed long QT syndrome/Brugada syndrome mutant in the cardiac voltage-gate...
Voltage-gated sodium channels are large transmembrane proteins that selectively allow the passage of...
From the Washington University Office of Undergraduate Research Digest (WUURD), Vol. 12, 05-01-2017....
Squid giant axons were used to study the reversible effects of high intracellular pH (pHi) on gating...
AbstractCut-open recordings from Xenopus oocytes expressing either nerve (PN1) or skeletal muscle (S...
To investigate effects of pH on the Na+,K+-ATPase, we used the Xenopus oocytes to measure transient ...
S4-type voltage-sensor (VS) domains are common to voltage-gated ion channels (VGCs) and voltage-sens...
Voltage-gated ion channels are crucial for electrical signaling in living organisms. They are compos...
Voltage-gated Na+ channels exhibit two forms of inactivation, one form (fast inactivation) takes eff...
AbstractLow pH depolarizes the voltage-dependence of cardiac voltage-gated sodium (NaV1.5) channel a...
Voltage-gated sodium (NaV) channels generate the action potential upstroke in most electrically exci...
E1784K is the most common mixed long QT syndrome/Brugada syndrome mutant in the cardiac voltage-gate...
<div><p>E1784K is the most common mixed long QT syndrome/Brugada syndrome mutant in the cardiac volt...
The cardiac voltage-gated sodium channel, NaV1.5, is responsible for the phase 0 depolarization of t...
AbstractLow pH depolarizes the voltage dependence of voltage-gated sodium (NaV) channel activation a...
E1784K is the most common mixed long QT syndrome/Brugada syndrome mutant in the cardiac voltage-gate...
Voltage-gated sodium channels are large transmembrane proteins that selectively allow the passage of...
From the Washington University Office of Undergraduate Research Digest (WUURD), Vol. 12, 05-01-2017....
Squid giant axons were used to study the reversible effects of high intracellular pH (pHi) on gating...
AbstractCut-open recordings from Xenopus oocytes expressing either nerve (PN1) or skeletal muscle (S...
To investigate effects of pH on the Na+,K+-ATPase, we used the Xenopus oocytes to measure transient ...
S4-type voltage-sensor (VS) domains are common to voltage-gated ion channels (VGCs) and voltage-sens...
Voltage-gated ion channels are crucial for electrical signaling in living organisms. They are compos...
Voltage-gated Na+ channels exhibit two forms of inactivation, one form (fast inactivation) takes eff...