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Syntaxin 1A调节上皮钠通道(ENaC)的活性。

Syntaxin 1A regulates ENaC channel activity.

作者信息

Condliffe Steven B, Zhang Hui, Frizzell Raymond A

机构信息

Department of Cell Biology and Physiology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15217, USA.

出版信息

J Biol Chem. 2004 Mar 12;279(11):10085-92. doi: 10.1074/jbc.M313592200. Epub 2003 Dec 31.

Abstract

Na(+) entry across the apical membranes of many absorptive epithelia is determined by the number (N) and open probability (P(o)) of epithelial sodium channels (ENaC). Previous results showed that the H3 domain of syntaxin-1A (S1A) binds to ENaC to reduce N, supporting a role for S1A in the regulation of ENaC trafficking. The aim of this study was to determine whether S1A-induced reductions in ENaC current also result from interactions between cell surface ENaC and S1A that alter ENaC P(o). Injection of a glutathione S-transferase (GST)-H3 S1A fusion protein into ENaC-expressing Xenopus oocytes inhibited whole cell Na(+) current (I(Na)) by 33% within 5 min. This effect was dose-dependent, with a K(i) of 7 ng/microl (approximately 200 nm). In contrast, injection of GST alone or a H3 domain-deleted GST-S1A fusion protein had no effect on I(Na). In cell-attached patch clamp experiments, GST-H3 acutely decreased ENaC P(o) by 30%, whereas GST-S1A Delta H3 was without effect. Further analysis revealed that ENaC mean closed time was significantly prolonged by S1A. Interestingly, GST-H3 had no effect on channel activity of an ENaC pore mutant that constitutively gates open (P(o) approximately equal 1.0), supporting the idea that S1A alters the closed state of ENaC and indicating that the actions of S1A on ENaC trafficking and gating can be separated experimentally. This study indicates that, in addition to a primary effect on ENaC trafficking, S1A interacts with cell surface ENaC to rapidly decrease channel gating. This rapid effect of S1A may modulate Na(+) entry rate during rapid increases in ENaC N.

摘要

许多吸收性上皮细胞顶端膜上的Na⁺内流由上皮钠通道(ENaC)的数量(N)和开放概率(Pₒ)决定。先前的研究结果表明, syntaxin-1A(S1A)的H3结构域与ENaC结合以减少N,这支持了S1A在调节ENaC转运中的作用。本研究的目的是确定S1A诱导的ENaC电流减少是否也源于细胞表面ENaC与S1A之间的相互作用,这种相互作用会改变ENaC的Pₒ。将谷胱甘肽S-转移酶(GST)-H3 S1A融合蛋白注射到表达ENaC的非洲爪蟾卵母细胞中,5分钟内全细胞Na⁺电流(Iₙₐ)受到33%的抑制。这种效应具有剂量依赖性,解离常数(Kᵢ)为7 ng/μl(约200 nM)。相比之下,单独注射GST或缺失H3结构域的GST-S1A融合蛋白对Iₙₐ没有影响。在细胞贴附式膜片钳实验中,GST-H3可使ENaC的Pₒ急性降低30%,而GST-S1A ΔH3则无此作用。进一步分析表明,S1A可显著延长ENaC的平均关闭时间。有趣的是,GST-H3对组成型开放的ENaC孔突变体的通道活性没有影响(Pₒ约等于1.0),这支持了S1A改变ENaC关闭状态的观点,并表明S1A对ENaC转运和门控的作用可以通过实验分开。本研究表明,除了对ENaC转运的主要作用外,S1A还与细胞表面的ENaC相互作用,迅速降低通道门控。S1A的这种快速作用可能在ENaC数量快速增加期间调节Na⁺内流速率。

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