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首页> 外文期刊>Journal of cardiovascular electrophysiology >Sodium channel inactivation in heart: a novel role of the carboxy-terminal domain.
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Sodium channel inactivation in heart: a novel role of the carboxy-terminal domain.

机译:心脏中的钠通道失活:羧基末端结构域的新作用。

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摘要

Electrical activity in the heart depends critically on the interactions of multiple ion channels to coordinate the timing of excitation and contraction of the ventricles. Voltage-gated sodium channels underlie the rapid spread of impulses through the atria and ventricles, but the importance of sodium (Na(+)) channels to the control of the ventricular action potential has only most recently become apparent through the investigation of the relationship between mutation-induced clinical phenotypes and the altered function of mutant Na(+) channels linked to inherited arrhythmias. Investigation into the structural basis of disease-associated mutations of the cardiac Na(+) channel has led to the discovery of novel role of the Na(+) channel carboxy-terminal (CT) domain in controlling channel inactivation. Intramolecular interactions between the carboxy-terminal domain and an intracellular peptide loop that forms the inactivation gate are required to minimize channel reopening during prolonged depolarization. Disruption of this interaction leads to persistent sodium channel current, action potential prolongation, and elevated risk of cardiac arrhythmia.
机译:心脏中的电活动主要取决于多个离子通道的相互作用,以协调心室的兴奋和收缩时间。电压门控钠通道是通过心房和心室快速传播脉冲的基础,但是钠(Na(+))通道对控制心室动作电位的重要性直到最近才通过研究突变诱导的临床表型和突变的Na(+)通道与遗传性心律失常相关的功能改变。对心脏Na(+)通道疾病相关突变的结构基础的研究已导致发现Na(+)通道羧基末端(CT)域在控制通道失活中的新作用。需要羧基末端结构域和形成失活门的细胞内肽环之间的分子内相互作用,以使延长的去极化过程中的通道重新开放最小化。这种相互作用的破坏导致持续的钠通道电流,动作电位延长以及心律不齐的风险增加。

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