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心脏钠通道:门控功能与分子药理学。

The cardiac sodium channel: gating function and molecular pharmacology.

作者信息

Balser J R

机构信息

Department of Anesthesiology, Vanderbilt University School of Medicine, Nashville, TN 37232-6602, USA.

出版信息

J Mol Cell Cardiol. 2001 Apr;33(4):599-613. doi: 10.1006/jmcc.2000.1346.

Abstract

Cardiac sodium (Na) channels are dynamic molecules that undergo rapid structural changes in response to the changing electrical field in the myocardium. Inherited mutations in SCN5A, the gene encoding the cardiac Na channel, provoke life-threatening cardiac arrhythmias, often by modifying these voltage-dependent conformational changes. These disorders (i.e. the long QT syndrome and Brugada syndrome) may serve as valuable models for understanding the mechanistic linkages between Na channel dysfunction and cardiac arrhythmias in more common, acquired conditions such as cardiac ischemia. In addition, the balance between therapeutic and adverse effects from Na channel blockade by antiarrhythmic compounds may be shifted by subtle alterations in Na channel function. This review examines recent studies that tie key loci in the Na channel primary sequence to its dynamic function, while examining the emerging themes linking Na channel structure, function, and pharmacology to inherited and acquired disorders of cardiac excitability.

摘要

心脏钠(Na)通道是动态分子,可响应心肌中不断变化的电场而发生快速的结构变化。编码心脏钠通道的基因SCN5A的遗传突变通常通过改变这些电压依赖性构象变化引发危及生命的心律失常。这些疾病(即长QT综合征和Brugada综合征)可作为有价值的模型,用于理解在诸如心脏缺血等更常见的后天性疾病中钠通道功能障碍与心律失常之间的机制联系。此外,抗心律失常化合物对钠通道的阻滞所产生的治疗效果与不良反应之间的平衡可能会因钠通道功能的细微改变而发生变化。本综述考察了近期的研究,这些研究将钠通道一级序列中的关键位点与其动态功能联系起来,同时探讨了将钠通道结构、功能和药理学与遗传性和后天性心脏兴奋性疾病联系起来的新主题。

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