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对含有F1304Q突变的失活缺陷型大鼠骨骼肌钠通道进行单通道分析。

Single-channel analysis of inactivation-defective rat skeletal muscle sodium channels containing the F1304Q mutation.

作者信息

Lawrence J H, Orias D W, Balser J R, Nuss H B, Tomaselli G F, O'Rourke B, Marban E

机构信息

Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

Biophys J. 1996 Sep;71(3):1285-94. doi: 10.1016/S0006-3495(96)79329-3.

Abstract

The intracellular linker between domains III and IV of the voltage-gated Na channel mediates fast inactivation. Targeted alteration of one or more of a triplet of hydrophobic amino acids within this linker region results in a marked slowing in the decay of ionic current. The mechanism of this defective inactivation was explored in rat skeletal muscle sodium channels (mu 1) containing the F1304Q mutation in Xenopus laevis oocytes with and without coexpression of the rat brain beta 1 subunit. Cell-attached single-channel patch-clamp recordings revealed that the mu 1-F1304Q channel reopens multiple times with open times that are prolonged compared with those of the wild-type channel. Coexpression of the beta 1 subunit stabilized a dominant nonbursting gating mode and accelerated the activation kinetics of mu 1-F1304Q but did not modify mean open time or fast-inactivation kinetics. A Markov gating model incorporating separate fast- and slow-inactivation particles reproduced the results by assuming that the F1304Q mutation specifically influences transitions to and from fast-inactivated states. These effects are independent of interactions of the mutant channel with the beta 1 subunit and do not result from a change in modal gating behavior. These results indicate that F1304Q mutant channels can still enter the inactivated state but do so reversibly and with altered kinetics.

摘要

电压门控钠通道结构域III和IV之间的细胞内连接子介导快速失活。该连接子区域内三联体疏水氨基酸中一个或多个的靶向改变会导致离子电流衰减明显减慢。在非洲爪蟾卵母细胞中表达含有F1304Q突变的大鼠骨骼肌钠通道(μ1),并分别共表达或不共表达大鼠脑β1亚基,以此探究这种缺陷性失活的机制。细胞贴附式单通道膜片钳记录显示,与野生型通道相比,μ1-F1304Q通道多次重新开放,开放时间延长。β1亚基的共表达稳定了一种主要的非爆发性门控模式,并加速了μ1-F1304Q的激活动力学,但未改变平均开放时间或快速失活动力学。一个包含独立快速和慢速失活粒子的马尔可夫门控模型通过假设F1304Q突变特异性影响快速失活状态的转换来重现结果。这些效应独立于突变通道与β1亚基的相互作用,并非由门控模式行为的改变所致。这些结果表明,F1304Q突变通道仍可进入失活状态,但这种进入是可逆的,且动力学发生了改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6e8/1233596/cb0707e99fc6/biophysj00043-0129-a.jpg

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