Department of Physiology and Pharmacology, Bristol Heart Institute, School of Medical Sciences, The University of Bristol, Bristol, UK.
J Cardiovasc Electrophysiol. 2010 Oct;21(10):1160-9. doi: 10.1111/j.1540-8167.2010.01772.x.
Potassium channels encoded by human ether-à-go-go-related gene (hERG) underlie the cardiac rapid delayed rectifier K(+) channel current (I(Kr)). Acidosis occurs in a number of pathological situations and modulates a range of ionic currents including I(Kr) . The aim of this study was to characterize effects of extracellular acidosis on hERG current (I(hERG)), with particular reference to quantifying effects on I(hERG) elicited by physiological waveforms and upon the protective role afforded by hERG against premature depolarizing stimuli.
I(hERG) recordings were made from hERG-expressing Chinese Hamster Ovary cells using whole-cell patch-clamp at 37°C. I(hERG) during action potential (AP) waveforms was rapidly suppressed by reducing external pH from 7.4 to 6.3. Peak repolarizing current and steady state I(hERG) activation were shifted by ∼+6 mV; maximal I(hERG) conductance was reduced. The voltage-dependence of I(hERG) inactivation was little-altered. Fast and slow time-constants of I(hERG) deactivation were smaller across a range of voltages at pH 6.3 than at pH 7.4, and the contribution of fast deactivation increased. A modest acceleration of the time-course of recovery of I(hERG) from inactivation was observed, but time-course of activation was unaffected. The amplitude of outward I(hERG) transients elicited by premature stimuli following an AP command was significantly decreased at lower pH. Computer simulations showed that after AP repolarization a subthreshold stimulus at pH 7.4 could evoke an AP at pH 6.3.
During acidosis the contribution of I(hERG) to action potential repolarization is reduced and hERG may be less effective in counteracting proarrhythmogenic depolarizing stimuli.
人类 ether-à-go-go 相关基因(hERG)编码的钾通道构成了心脏快速延迟整流钾(K+)电流(I(Kr))。酸中毒发生在许多病理情况下,并调节包括 I(Kr)在内的多种离子电流。本研究旨在描述细胞外酸中毒对 hERG 电流(I(hERG))的影响,特别关注量化生理波形引起的 I(hERG)以及 hERG 对过早去极化刺激的保护作用。
使用全细胞膜片钳技术,在 37°C 下,从表达 hERG 的中国仓鼠卵巢细胞中记录 I(hERG)。从 7.4 降低到 6.3 时,动作电位(AP)波形期间的 I(hERG)迅速被抑制。峰复极化电流和稳态 I(hERG)激活向+6 mV 移位;最大 I(hERG)电导降低。I(hERG)失活的电压依赖性变化不大。在 pH 6.3 时,与 pH 7.4 相比,I(hERG)去激活的快和慢时程在整个电压范围内变小,并且快去激活的贡献增加。观察到从失活到恢复的 I(hERG)时间过程的适度加速,但激活时间过程不受影响。在较低 pH 值时,由 AP 命令后过早刺激引起的外向 I(hERG)瞬变的幅度显着降低。计算机模拟表明,在 AP 复极化后,在 pH 7.4 时亚阈刺激可以在 pH 6.3 时引发 AP。
在酸中毒期间,AP 复极化过程中 I(hERG)的贡献减少,hERG 可能在对抗致心律失常性去极化刺激方面效果降低。