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钠通道α亚基细胞外区段在电压依赖性门控及β1亚基调节中的功能作用

Functional roles of the extracellular segments of the sodium channel alpha subunit in voltage-dependent gating and modulation by beta1 subunits.

作者信息

Qu Y, Rogers J C, Chen S F, McCormick K A, Scheuer T, Catterall W A

机构信息

Department of Pharmacology, University of Washington, Seattle, Washington 98195-7280, USA.

出版信息

J Biol Chem. 1999 Nov 12;274(46):32647-54. doi: 10.1074/jbc.274.46.32647.

Abstract

Voltage-gated sodium channels consist of a pore-forming alpha subunit associated with beta1 subunits and, for brain sodium channels, beta2 subunits. Although much is known about the structure and function of the alpha subunit, there is little information on the functional role of the 16 extracellular loops. To search for potential functional activities of these extracellular segments, chimeras were studied in which an individual extracellular loop of the rat heart (rH1) alpha subunit was substituted for the corresponding segment of the rat brain type IIA (rIIA) alpha subunit. In comparison with rH1, wild-type rIIA alpha subunits are characterized by more positive voltage-dependent activation and inactivation, a more prominent slow gating mode, and a more substantial shift to the fast gating mode upon coexpression of beta1 subunits in Xenopus oocytes. When alpha subunits were expressed alone, chimeras with substitutions from rH1 in five extracellular loops (IIS5-SS1, IISS2-S6, IIIS1-S2, IIISS2-S6, and IVS3-S4) had negatively shifted activation, and chimeras with substitutions in three of these (IISS2-S6, IIIS1-S2, and IVS3-S4) also had negatively shifted steady-state inactivation. rIIA alpha subunit chimeras with substitutions from rH1 in five extracellular loops (IS5-SS1, ISS2-S6, IISS2-S6, IIIS1-S2, and IVS3-S4) favored the fast gating mode. Like wild-type rIIA alpha subunits, all of the chimeric rIIA alpha subunits except chimera IVSS2-S6 were shifted almost entirely to the fast gating mode when coexpressed with beta1 subunits. In contrast, substitution of extracellular loop IVSS2-S6 substantially reduced the effectiveness of beta1 subunits in shifting rIIA alpha subunits to the fast gating mode. Our results show that multiple extracellular loops influence voltage-dependent activation and inactivation and gating mode of sodium channels, whereas segment IVSS2-S6 plays a dominant role in modulation of gating by beta1 subunits. Evidently, several extracellular loops are important determinants of sodium channel gating and modulation.

摘要

电压门控钠通道由一个形成孔道的α亚基与β1亚基相关联组成,对于脑钠通道而言,还与β2亚基相关联。尽管对α亚基的结构和功能已了解很多,但关于16个细胞外环的功能作用却知之甚少。为了探寻这些细胞外片段的潜在功能活性,研究了嵌合体,其中大鼠心脏(rH1)α亚基的单个细胞外环被大鼠脑IIA型(rIIA)α亚基的相应片段所取代。与rH1相比,野生型rIIAα亚基的特征在于更正向的电压依赖性激活和失活、更显著的慢门控模式以及在非洲爪蟾卵母细胞中与β1亚基共表达时向快门控模式的更显著转变。当单独表达α亚基时,在五个细胞外环(IIS5-SS1、IISS2-S6、IIIS1-S2、IIISS2-S6和IVS3-S4)中具有来自rH1替换的嵌合体具有负向偏移的激活,并且在其中三个(IISS2-S6、IIIS1-S2和IVS3-S4)中具有替换的嵌合体也具有负向偏移的稳态失活。在五个细胞外环(IS5-SS1、ISS2-S6、IISS2-S6、IIIS1-S2和IVS3-S4)中具有来自rH1替换的rIIAα亚基嵌合体倾向于快门控模式。与野生型rIIAα亚基一样,除嵌合体IVSS2-S6外的所有嵌合rIIAα亚基在与β1亚基共表达时几乎完全转变为快门控模式。相比之下,细胞外环IVSS2-S6的替换显著降低了β1亚基将rIIAα亚基转变为快门控模式的有效性。我们的结果表明,多个细胞外环影响钠通道的电压依赖性激活、失活和门控模式,而片段IVSS2-S6在β1亚基对门控的调节中起主导作用。显然,几个细胞外环是钠通道门控和调节的重要决定因素。

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