The cardiac voltage-gated sodium channel, Na(V)1.5, drives the upstroke of the cardiac action potential and is a critical determinant of myocyte excitability. Recently, calcium (Ca(2+))/calmodulin(CaM)-dependent protein kinase II (CaMKII) has emerged as a critical regulator of Na(V)1.5 function through phosphorylation of multiple residues including S516, T594, and S571, and these phosphorylation events may be important for the genesis of acquired arrhythmias, which occur in heart failure. However, phosphorylation of full-length human Na(V)1.5 has not been systematically analyzed and Na(V)1.5 phosphorylation in human heart failure is incompletely understood. In the present study, we used label-free mass spectrometry to assess phosphorylation...
Voltage-gated Na+ (NaV) channels are key regulators of myocardial excitability, and Ca2+/calmodulin-...
International audienceVoltage-gated Na(+) (NaV) channels are key regulators of myocardial excitabili...
Aims Calmodulin (CaM) regulates Na+ channel gating through binding to an IQ-like motif in the C-term...
The cardiac voltage-gated sodium channel, Na(V)1.5, drives the upstroke of the cardiac action potent...
The cardiac voltage-gated sodium channel, Na<sub>V</sub>1.5, drives the upstroke of the cardiac acti...
Voltage-gated Na+ (Nav) channels are key determinants of myocardial excitability and defects in Nav ...
Na(+) homeostasis is a key regulator of cardiac excitation and contraction. The cardiac voltage-gate...
Na(+) homeostasis is a key regulator of cardiac excitation and contraction. The cardiac voltage-gate...
Background—Human gene variants affecting ion channel biophysical activity and/or membrane localizati...
Voltage-gated Na+ (Nav) channels are key determinants of myocardial excitability and defects in Nav ...
Voltage-gated Na+ (Na-V) channels are key regulators of myocardial excitability, and Ca2+/calmodulin...
International audiencePhosphorylation of the voltage-gated Na+ (NaV) channel NaV1.5 regulates cardia...
Phosphorylation of Na V 1.5 channels regulates cardiac excitability, yet the phosphorylation sites r...
International audienceVoltage-gated Na(+) (NaV) channels are key regulators of myocardial excitabili...
Voltage-gated Na+ (NaV) channels are key regulators of myocardial excitability, and Ca2+/calmodulin-...
Voltage-gated Na+ (NaV) channels are key regulators of myocardial excitability, and Ca2+/calmodulin-...
International audienceVoltage-gated Na(+) (NaV) channels are key regulators of myocardial excitabili...
Aims Calmodulin (CaM) regulates Na+ channel gating through binding to an IQ-like motif in the C-term...
The cardiac voltage-gated sodium channel, Na(V)1.5, drives the upstroke of the cardiac action potent...
The cardiac voltage-gated sodium channel, Na<sub>V</sub>1.5, drives the upstroke of the cardiac acti...
Voltage-gated Na+ (Nav) channels are key determinants of myocardial excitability and defects in Nav ...
Na(+) homeostasis is a key regulator of cardiac excitation and contraction. The cardiac voltage-gate...
Na(+) homeostasis is a key regulator of cardiac excitation and contraction. The cardiac voltage-gate...
Background—Human gene variants affecting ion channel biophysical activity and/or membrane localizati...
Voltage-gated Na+ (Nav) channels are key determinants of myocardial excitability and defects in Nav ...
Voltage-gated Na+ (Na-V) channels are key regulators of myocardial excitability, and Ca2+/calmodulin...
International audiencePhosphorylation of the voltage-gated Na+ (NaV) channel NaV1.5 regulates cardia...
Phosphorylation of Na V 1.5 channels regulates cardiac excitability, yet the phosphorylation sites r...
International audienceVoltage-gated Na(+) (NaV) channels are key regulators of myocardial excitabili...
Voltage-gated Na+ (NaV) channels are key regulators of myocardial excitability, and Ca2+/calmodulin-...
Voltage-gated Na+ (NaV) channels are key regulators of myocardial excitability, and Ca2+/calmodulin-...
International audienceVoltage-gated Na(+) (NaV) channels are key regulators of myocardial excitabili...
Aims Calmodulin (CaM) regulates Na+ channel gating through binding to an IQ-like motif in the C-term...