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在表达电压门控钾通道N端和第一个跨膜片段的转基因小鼠中出现的长QT间期和室性心律失常。

Long QT and ventricular arrhythmias in transgenic mice expressing the N terminus and first transmembrane segment of a voltage-gated potassium channel.

作者信息

London B, Jeron A, Zhou J, Buckett P, Han X, Mitchell G F, Koren G

机构信息

Division of Cardiology, University of Pittsburgh Medical Center, Pittsburgh, PA 15213, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Mar 17;95(6):2926-31. doi: 10.1073/pnas.95.6.2926.

Abstract

Voltage-gated potassium channels control cardiac repolarization, and mutations of K+ channel genes recently have been shown to cause arrhythmias and sudden death in families with the congenital long QT syndrome. The precise mechanism by which the mutations lead to QT prolongation and arrhythmias is uncertain, however. We have shown previously that an N-terminal fragment including the first transmembrane segment of the rat delayed rectifier K+ channel Kv1.1 (Kv1.1N206Tag) coassembles with other K+ channels of the Kv1 subfamily in vitro, inhibits the currents encoded by Kv1.5 in a dominant-negative manner when coexpressed in Xenopus oocytes, and traps Kv1.5 polypeptide in the endoplasmic reticulum of GH3 cells. Here we report that transgenic mice overexpressing Kv1.1N206Tag in the heart have a prolonged QT interval and ventricular tachycardia. Cardiac myocytes from these mice have action potential prolongation caused by a significant reduction in the density of a rapidly activating, slowly inactivating, 4-aminopyridine sensitive outward K+ current. These changes correlate with a marked decrease in the level of Kv1.5 polypeptide. Thus, overexpression of a truncated K+ channel in the heart alters native K+ channel expression and has profound effects on cardiac excitability.

摘要

电压门控钾通道控制心脏复极化,最近研究表明,在先天性长QT综合征家族中,钾通道基因的突变会导致心律失常和猝死。然而,这些突变导致QT间期延长和心律失常的确切机制尚不清楚。我们之前已经表明,包含大鼠延迟整流钾通道Kv1.1第一个跨膜片段的N端片段(Kv1.1N206Tag)在体外与Kv1亚家族的其他钾通道共同组装,当在非洲爪蟾卵母细胞中共表达时,以显性负性方式抑制Kv1.5编码的电流,并将Kv1.5多肽截留在GH3细胞的内质网中。在此,我们报告在心脏中过表达Kv1.1N206Tag的转基因小鼠QT间期延长且出现室性心动过速。这些小鼠的心肌细胞动作电位延长,这是由一种快速激活、缓慢失活、对4-氨基吡啶敏感的外向钾电流密度显著降低所致。这些变化与Kv1.5多肽水平的显著降低相关。因此,心脏中截短的钾通道过表达会改变天然钾通道的表达,并对心脏兴奋性产生深远影响。

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