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ENaC(一种克隆的上皮钠离子通道)的三桶状结构。

Triple-barrel organization of ENaC, a cloned epithelial Na+ channel.

作者信息

Ismailov I I, Awayda M S, Berdiev B K, Bubien J K, Lucas J E, Fuller C M, Benos D J

机构信息

Department of Physiology and Biophysics, University of Alabama at Birmingham 35294, USA.

出版信息

J Biol Chem. 1996 Jan 12;271(2):807-16. doi: 10.1074/jbc.271.2.807.

Abstract

A cloned rat epithelial Na+ channel (rENaC) was studied in planar lipid bilayers. Two forms of the channel were examined: channels produced by the alpha subunit alone and those formed by alpha, beta, and gamma subunits. The protein was derived from two sources: either from in vitro translation reaction followed by Sephadex column purification or from heterologous expression in Xenopus oocytes and isolation of plasma membranes. We found that either alpha-rENaC alone or alpha- in combination with beta- and gamma-rENaC, produced highly Na(+)-selective (PNa/PK = 10), amiloride-sensitive (Kamili = 170 nM), and mechanosensitive cation channels in planar bilayers. alpha-rENaC displayed a complicated gating mechanism: there was a nearly constitutively open 13-picosiemens (pS) state and a second 40-pS level that was achieved from the 13-pS level by a 26-pS transition. alpha-, beta-, gamma-rENaC showed primarily the 13-pS level. alpha-rENaC and alpha,beta,gamma-rENaC channels studied by patch clamp displayed the same gating pattern, albeit with > 2-fold lowered conductance levels, i.e. 6 and 18 pS, respectively. Upon treatment of either channel with the sulfhydryl reducing agent dithiothreitol, both channels fluctuated among three independent 13-pS sublevels. Bathing each channel with a high salt solution (1.5 M NaCl) produced stochastic openings of 19 and 38 pS in magnitude between all three conductance levels. Different combinations of alpha-, beta-, and gamma-rENaC in the reconstitution mixture did not produce channels of intermediate conductance levels. These findings suggest that functional ENaC is composed of three identical conducting elements and that their gating is concerted.

摘要

在平面脂质双分子层中对克隆的大鼠上皮钠通道(rENaC)进行了研究。研究了该通道的两种形式:仅由α亚基产生的通道以及由α、β和γ亚基形成的通道。该蛋白来源于两种途径:要么来自体外翻译反应后经葡聚糖凝胶柱纯化,要么来自非洲爪蟾卵母细胞中的异源表达及质膜分离。我们发现,单独的α-rENaC或α与β和γ-rENaC组合,在平面双分子层中产生了高度钠选择性(PNa/PK = 10)、氨氯地平敏感(Kamili = 170 nM)且对机械敏感的阳离子通道。α-rENaC表现出复杂的门控机制:存在一个几乎持续开放的13皮西门子(pS)状态以及第二个40-pS水平,后者通过26-pS的转变从13-pS水平达到。α、β、γ-rENaC主要表现出13-pS水平。通过膜片钳研究的α-rENaC和α、β、γ-rENaC通道表现出相同的门控模式,尽管电导水平分别降低了2倍以上,即分别为6和18 pS。用巯基还原剂二硫苏糖醇处理任一通道后,两个通道在三个独立的13-pS子水平之间波动。用高盐溶液(1.5 M NaCl)灌注每个通道会在所有三个电导水平之间产生大小为19和38 pS的随机开放。重构混合物中α、β和γ-rENaC的不同组合未产生中间电导水平的通道。这些发现表明功能性ENaC由三个相同的传导元件组成,并且它们的门控是协同的。

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