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快速失活导致IKr通道出现整流。

Fast inactivation causes rectification of the IKr channel.

作者信息

Spector P S, Curran M E, Zou A, Keating M T, Sanguinetti M C

机构信息

Cardiology Division, University of Utah, Salt Lake City 84112, USA.

出版信息

J Gen Physiol. 1996 May;107(5):611-9. doi: 10.1085/jgp.107.5.611.

Abstract

The mechanism of rectification of HERG, the human cardiac delayed rectifier K+ channel, was studied after heterologous expression in Xenopus oocytes. Currents were measured using two-microelectrode and macropatch voltage clamp techniques. The fully activated current-voltage (I-V) relationship for HERG inwardly rectified. Rectification was not altered by exposing the cytoplasmic side of a macropatch to a divalent-free solution, indicating this property was not caused by voltage-dependent block of outward current by Mg2+ or other soluble cytosolic molecules. The instantaneous I-V relationship for HERG was linear after removal of fast inactivation by a brief hyperpolarization. The time constants for the onset of and recovery from inactivation were a bell-shaped function of membrane potential. The time constants of inactivation varied from 1.8 ms at +50 mV to 16 ms at -20 mV; recovery from inactivation varied from 4.7 ms at -120 mV to 15 ms at -50 mV. Truncation of the NH2-terminal region of HERG shifted the voltage dependence of activation and inactivation by +20 to +30 mV. In addition, the rate of deactivation of the truncated channel was much faster than wild-type HERG. The mechanism of HERG rectification is voltage-gated fast inactivation. Inactivation of channels proceeds at a much faster rate than activation, such that no outward current is observed upon depolarization to very high membrane potentials. Fast inactivation of HERG and the resulting rectification are partly responsible for the prolonged plateau phase typical of ventricular action potentials.

摘要

在非洲爪蟾卵母细胞中进行异源表达后,对人心脏延迟整流钾通道HERG的整流机制进行了研究。使用双微电极和膜片钳电压钳技术测量电流。HERG的完全激活电流-电压(I-V)关系呈内向整流。将膜片钳的胞质侧暴露于无二价离子的溶液中,整流作用未改变,这表明该特性不是由Mg2+或其他可溶性胞质分子对外向电流的电压依赖性阻断引起的。通过短暂超极化消除快速失活后,HERG的瞬时I-V关系呈线性。失活起始和恢复的时间常数是膜电位的钟形函数。失活的时间常数从+50 mV时的1.8 ms变化到-20 mV时的16 ms;失活恢复的时间常数从-120 mV时的4.7 ms变化到-50 mV时的15 ms。HERG氨基末端区域的截短使激活和失活的电压依赖性向正移20至30 mV。此外,截短通道的失活速率比野生型HERG快得多。HERG整流的机制是电压门控快速失活。通道失活的速率比激活快得多,以至于去极化到非常高的膜电位时未观察到外向电流。HERG的快速失活及由此产生的整流部分导致了心室动作电位典型的延长平台期。

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