Voltage-gated sodium (NaV) channels are responsible for the initiation and propagation of action potentials. In the heart, the predominant NaV1.5 α subunit is composed of four homologous repeats (I-IV) and forms a macromolecular complex with multiple accessory proteins, including intracellular fibroblast growth factors (iFGF). In spite of high homology, each of the iFGFs, iFGF11-iFGF14, as well as the individual iFGF splice variants, differentially regulates NaV channel gating, and the mechanisms underlying these differential effects remain elusive. Much of the work exploring iFGF regulation of NaV1.5 has been performed in mouse and rat ventricular myocytes in which iFGF13VY is the predominant iFGF expressed, whereas investigation into NaV1...
E1784K is the most common mixed long QT syndrome/Brugada syndrome mutant in the cardiac voltage-gate...
Evidence supports the expression of brain‐type sodium channels in the heart. Their functional role, ...
The cardiac voltage-gated sodium channel, NaV1.5, is responsible for the phase 0 depolarization of t...
Posttranslational regulation of cardiac NaV1.5 channels is critical in modulating channel expression...
<p>FGF13 (FHF2), the major fibroblast growth factor homologous factor (FHF) in rodent heart, directl...
The voltage-gated Na+ channel regulates the initiation and propagation of the action potential in ex...
Proper functioning of the voltage gated sodium channel, NaV1.5, is essential for maintenance of norm...
During the past decade, Nav1.5, the main voltage-gated Na+ channel in the heart, has been shown to b...
BACKGROUND -Dysregulation of voltage-gated cardiac Na(+) channels (NaV1.5) by inherited mutations...
SummaryVoltage-gated Na+ (NaV) channels initiate neuronal action potentials. NaV channels are compos...
During the past decade, Na(v)1.5, the main voltage-gated Na(+) channel in the heart, has been shown ...
Voltage-gated Na(+) (NaV) channels comprise a macromolecular complex whose components tailor channel...
Voltage-gated Na+ (NaV) channels are key regulators of myocardial excitability, and Ca2+/calmodulin-...
AbstractThe cardiac sodium current (INa) is responsible for the rapid depolarization of cardiac cell...
International audienceVoltage-gated Na(+) (NaV) channels are key regulators of myocardial excitabili...
E1784K is the most common mixed long QT syndrome/Brugada syndrome mutant in the cardiac voltage-gate...
Evidence supports the expression of brain‐type sodium channels in the heart. Their functional role, ...
The cardiac voltage-gated sodium channel, NaV1.5, is responsible for the phase 0 depolarization of t...
Posttranslational regulation of cardiac NaV1.5 channels is critical in modulating channel expression...
<p>FGF13 (FHF2), the major fibroblast growth factor homologous factor (FHF) in rodent heart, directl...
The voltage-gated Na+ channel regulates the initiation and propagation of the action potential in ex...
Proper functioning of the voltage gated sodium channel, NaV1.5, is essential for maintenance of norm...
During the past decade, Nav1.5, the main voltage-gated Na+ channel in the heart, has been shown to b...
BACKGROUND -Dysregulation of voltage-gated cardiac Na(+) channels (NaV1.5) by inherited mutations...
SummaryVoltage-gated Na+ (NaV) channels initiate neuronal action potentials. NaV channels are compos...
During the past decade, Na(v)1.5, the main voltage-gated Na(+) channel in the heart, has been shown ...
Voltage-gated Na(+) (NaV) channels comprise a macromolecular complex whose components tailor channel...
Voltage-gated Na+ (NaV) channels are key regulators of myocardial excitability, and Ca2+/calmodulin-...
AbstractThe cardiac sodium current (INa) is responsible for the rapid depolarization of cardiac cell...
International audienceVoltage-gated Na(+) (NaV) channels are key regulators of myocardial excitabili...
E1784K is the most common mixed long QT syndrome/Brugada syndrome mutant in the cardiac voltage-gate...
Evidence supports the expression of brain‐type sodium channels in the heart. Their functional role, ...
The cardiac voltage-gated sodium channel, NaV1.5, is responsible for the phase 0 depolarization of t...