Lees-Miller James P, Guo Jiqing, Somers Julie R, Roach Dan E, Sheldon Robert S, Rancourt Derrick E, Duff Henry J
Department of Medicine, University of Calgary, 3330 Hospital Drive NW, Calgary, Alberta, Canada T2N 4N1.
Mol Cell Biol. 2003 Mar;23(6):1856-62. doi: 10.1128/MCB.23.6.1856-1862.2003.
The ERG1 gene encodes a family of potassium channels. Mutations in human ERG1 lead to defects in cardiac repolarization, referred to as the long QT syndrome. Through homologous recombination in mouse embryonic stem cells the ERG1 B potassium channel transcript was eliminated while the ERG1 A transcript was maintained. Heterologous expression of ERG1 isoforms had previously indicated that the deactivation time course of ERG1 B is 10-fold more rapid than that of ERG1 A. In day-18 fetal +/+ myocytes, I(Kr) exhibited two time constants of deactivation (3,933 +/- 404 and 350 +/- 19 ms at -50 mV), whereas in age-matched ERG1 B(-/-) mice the rapid component was absent. Biexponential deactivation rates (2,039 +/- 268 and 163 +/- 43 ms at -50 mV) were also observed in adult +/+ myocytes. In adult ERG1 B(-/-) myocytes no I(Kr) was detected. Electrocardiogram intervals were similar in +/+ and -/- mice. However, adult -/- mice manifested abrupt spontaneous episodes of sinus bradycardia (>100 ms of slowing) in 6 out of 21 mice. This phenomenon was never observed in +/+ mice (0 out of 16). We conclude that ERG1 B is necessary for I(Kr) expression in the surface membrane of adult myocytes. Knockout of ERG1 B predisposes mice to episodic sinus bradycardia.
ERG1基因编码一族钾通道。人类ERG1基因的突变会导致心脏复极化缺陷,即长QT综合征。通过对小鼠胚胎干细胞进行同源重组,消除了ERG1 B钾通道转录本,同时保留了ERG1 A转录本。此前,ERG1亚型的异源表达表明,ERG1 B的失活时间进程比ERG1 A快10倍。在18日龄胎儿的+/+心肌细胞中,I(Kr)表现出两个失活时间常数(在-50 mV时分别为3933±404和350±19毫秒),而在年龄匹配的ERG1 B(-/-)小鼠中,快速成分缺失。在成年+/+心肌细胞中也观察到双指数失活率(在-50 mV时分别为2039±268和163±43毫秒)。在成年ERG1 B(-/-)心肌细胞中未检测到I(Kr)。+/+和-/-小鼠的心电图间期相似。然而,21只成年-/-小鼠中有6只出现了突然的自发性窦性心动过缓发作(减慢>100毫秒)。在+/+小鼠中从未观察到这种现象(16只中0只)。我们得出结论,ERG1 B对于成年心肌细胞表面膜上I(Kr)的表达是必需的。敲除ERG1 B使小鼠易患发作性窦性心动过缓。