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动态动作电位钳技术揭示的HERG通道(功能异常)功能

HERG channel (dys)function revealed by dynamic action potential clamp technique.

作者信息

Berecki Géza, Zegers Jan G, Verkerk Arie O, Bhuiyan Zahurul A, de Jonge Berend, Veldkamp Marieke W, Wilders Ronald, van Ginneken Antoni C G

机构信息

Experimental and Molecular Cardiology Group and the Department of Physiology, Academic Medical Center, University of Amsterdam, The Netherlands.

出版信息

Biophys J. 2005 Jan;88(1):566-78. doi: 10.1529/biophysj.104.047290. Epub 2004 Oct 8.

Abstract

The human ether-a-go-go-related gene (HERG) encodes the rapid component of the cardiac delayed rectifier potassium current (I(Kr)). Per-Arnt-Sim domain mutations of the HERG channel are linked to type 2 long-QT syndrome. We studied wild-type and/or type 2 long-QT syndrome-associated mutant (R56Q) HERG current (I(HERG)) in HEK-293 cells, at both 23 and 36 degrees C. Conventional voltage-clamp analysis revealed mutation-induced changes in channel kinetics. To assess functional implication(s) of the mutation, we introduce the dynamic action potential clamp technique. In this study, we effectively replace the native I(Kr) of a ventricular cell (either a human model cell or an isolated rabbit myocyte) with I(HERG) generated in a HEK-293 cell that is voltage-clamped by the free-running action potential of the ventricular cell. Action potential characteristics of the ventricular cells were effectively reproduced with wild-type I(HERG), whereas the R56Q mutation caused a frequency-dependent increase of the action potential duration in accordance with the clinical phenotype. The dynamic action potential clamp approach also revealed a frequency-dependent transient wild-type I(HERG) component, which is absent with R56Q channels. This novel electrophysiological technique allows rapid and unambiguous determination of the effects of an ion channel mutation on the ventricular action potential and can serve as a new tool for investigating cardiac channelopathies.

摘要

人ether-a-go-go相关基因(HERG)编码心脏延迟整流钾电流(I(Kr))的快速成分。HERG通道的Per-Arnt-Sim结构域突变与2型长QT综合征相关。我们在23摄氏度和36摄氏度下研究了HEK-293细胞中的野生型和/或与2型长QT综合征相关的突变型(R56Q)HERG电流(I(HERG))。传统的电压钳分析揭示了突变引起的通道动力学变化。为了评估该突变的功能影响,我们引入了动态动作电位钳技术。在本研究中,我们用由心室细胞的自由运行动作电位进行电压钳制的HEK-293细胞中产生的I(HERG)有效替代心室细胞(人模型细胞或分离的兔心肌细胞)的天然I(Kr)。野生型I(HERG)有效地重现了心室细胞的动作电位特征,而R56Q突变根据临床表型导致动作电位持续时间呈频率依赖性增加。动态动作电位钳方法还揭示了频率依赖性的瞬时野生型I(HERG)成分,而R56Q通道不存在该成分。这种新型电生理技术能够快速、明确地确定离子通道突变对心室动作电位的影响,并可作为研究心脏离子通道病的新工具。

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