Gain-of-function mutation of Nav1.5 in atrial fibrillation enhances cellular excitability and lowers the threshold for action potential firing

被引:83
作者
Li, Qiuju [4 ]
Huang, Hai [2 ]
Liu, Gele [4 ]
Lam, Khanh [5 ]
Rutberg, Julie [4 ]
Green, Martin S. [4 ]
Birnie, David H. [4 ]
Lemery, Robert [4 ]
Chahine, Mohamed [2 ,3 ]
Gollob, Michael H. [1 ,4 ]
机构
[1] Univ Ottawa, Inst Heart, Dept Cellular & Mol Med, Ottawa, ON K1Y 4W7, Canada
[2] Univ Laval Robert Giffard, Le Ctr Rech, Laval, PQ, Canada
[3] Univ Laval, Quebec City, PQ, Canada
[4] Univ Ottawa, Inst Heart, Div Cardiol, Ottawa, ON K1Y 4W7, Canada
[5] Univ Ottawa, Inst Heart, Dept Surg, Ottawa, ON K1Y 4W7, Canada
关键词
Arrhythmia; Fibrillation; Genetics; Na(v)1.5; SCN5A; Hyperexcitability; Electrophysiology; Atria; HL-1; Cardiomyocytes; INHERITED CARDIAC-ARRHYTHMIA; NA+-CHANNEL INACTIVATION; GATED SODIUM-CHANNELS; DENTATE GRANULE CELLS; RAT CA1 NEURONS; KINDLING EPILEPTOGENESIS; MOLECULAR-MECHANISM; STATUS EPILEPTICUS; SCN5A; CURRENTS;
D O I
10.1016/j.bbrc.2009.01.052
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Genetic mutations of the cardiac sodium channel (SCN5A) specific only to the phenotype of atrial fibrillation have recently been described. However, data on the biophysical properties of SCN5A variants associated with atrial fibrillation are scarce. In a mother and son with lone atrial fibrillation, we identified a novel SCN5A coding variant, K1493R, which altered a highly conserved residue in the DIII-IV linker and was located six amino acids downstream from the fast inactivation motif of sodium channels. Biophysical studies of K1493R in tsA201 cells demonstrated a significant positive shift in voltage-dependence of inactivation and a large ramp Current near resting membrane potential, indicating a gain-of-function. Enhanced cellular excitability was observed in transfected HL-1 atrial cardiomyocytes, including spontaneous action potential deplorizations and a lower threshold for action potential firing. These novel biophysical observations provide molecular evidence linking cellular "hyperexcitability" as a mechanism inducing vulnerability to this common arrhythmia. (C) 2009 Elsevier Inc. All rights reserved.
引用
收藏
页码:132 / 137
页数:6
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