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通道开放而非电压传感器移动,是hERG阻滞剂促进作用电压依赖性的基础。

Pore opening, not voltage sensor movement, underpins the voltage-dependence of facilitation by a hERG blocker.

作者信息

Furutani Kazuharu, Kawano Ryotaro, Ichiwara Minami, Adachi Ryo, Clancy Colleen E, Sack Jon T, Kita Satomi

机构信息

Department of Pharmacology, Tokushima Bunri University, Japan

Department of Pharmacology, Tokushima Bunri University, Japan.

出版信息

Mol Pharmacol. 2022 Aug 30;102(5):223-33. doi: 10.1124/molpharm.122.000569.

Abstract

A drug that blocks the cardiac myocyte voltage-gated K channels encoded by the human Ether-à-go-go-Related Gene (hERG) carries a potential risk of long QT syndrome and life-threatening cardiac arrhythmia, including Interestingly, certain hERG blockers can also facilitate hERG activation to increase hERG currents, which may reduce proarrhythmic potential. However, the molecular mechanism involved in the facilitation effect of hERG blockers remains unclear. The hallmark feature of the facilitation effect by hERG blockers is that a depolarizing preconditioning pulse shifts voltage-dependence of hERG activation to more negative voltages. Here we utilize a D540K hERG mutant to study the mechanism of the facilitation effect. D540K hERG is activated by not only depolarization but also hyperpolarization. This unusual gating property enables tests of the mechanism by which voltage induces facilitation of hERG by blockers. With D540K hERG, we find that nifekalant, a hERG blocker and Class III antiarrhythmic agent, blocks and facilitates not only current activation by depolarization but also current activation by hyperpolarization, suggesting a shared gating process upon depolarization and hyperpolarization. Moreover, in response to hyperpolarizing conditioning pulses, nifekalant facilitates D540K hERG currents but not wild-type currents. Our results indicate that induction of facilitation is coupled to pore opening, not voltage We propose that gated access to the hERG central cavity underlies the voltage-dependence of induction of facilitation. This study identifies hERG channel pore gate opening as the conformational change facilitated by nifekalant, a clinically important antiarrhythmic agent. Nifekalant is a clinically important antiarrhythmic agent and a hERG blocker which can also facilitate voltage-dependent activation of hERG channels after a preconditioning pulse. Here we show that the mechanism of action of the preconditioning pulse is to open a conductance gate to enable drug access to a facilitation site. Moreover, we find that facilitation increases hERG currents by altering pore dynamics, rather than acting through voltage sensors.

摘要

一种阻断由人类醚 - 去极化相关基因(hERG)编码的心肌细胞电压门控钾通道的药物,存在引发长QT综合征和危及生命的心律失常的潜在风险,包括……有趣的是,某些hERG阻滞剂还可促进hERG激活以增加hERG电流,这可能会降低促心律失常的可能性。然而,hERG阻滞剂促进作用所涉及的分子机制仍不清楚。hERG阻滞剂促进作用的标志性特征是,去极化预处理脉冲会将hERG激活的电压依赖性向更负的电压方向移动。在此,我们利用D540K hERG突变体来研究促进作用的机制。D540K hERG不仅可被去极化激活,也可被超极化激活。这种不寻常的门控特性使得能够测试电压诱导hERG被阻滞剂促进的机制。利用D540K hERG,我们发现尼非卡兰,一种hERG阻滞剂和III类抗心律失常药物,不仅阻断并促进去极化引起的电流激活,还阻断并促进超极化引起的电流激活,这表明在去极化和超极化时存在共同的门控过程。此外,响应超极化预处理脉冲时,尼非卡兰促进D540K hERG电流,但不促进野生型电流。我们的结果表明,促进作用的诱导与孔开放相关,而非与电压相关。我们提出,hERG中央腔的门控通道是促进作用诱导电压依赖性的基础。本研究确定hERG通道孔门开放是临床上重要的抗心律失常药物尼非卡兰所促进的构象变化。尼非卡兰是一种临床上重要的抗心律失常药物和hERG阻滞剂,在预处理脉冲后还可促进hERG通道的电压依赖性激活。在此我们表明,预处理脉冲的作用机制是打开一个电导门,使药物能够进入促进位点。此外,我们发现促进作用通过改变孔动力学来增加hERG电流,而不是通过电压传感器起作用。

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