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重构到平面脂质双分子层膜中的氨氯地平敏感上皮钠通道。

Amiloride-sensitive epithelial Na+ channels reconstituted into planar lipid bilayer membranes.

作者信息

Sariban-Sohraby S, Latorre R, Burg M, Olans L, Benos D

出版信息

Nature. 1984;308(5954):80-2. doi: 10.1038/308080a0.

Abstract

High resistance epithelia actively transport sodium from the luminal side to the blood. Aldosterone and vasopressin stimulate this sodium transport system; the diuretic drug amiloride inhibits it in a reversible fashion. The first step in the transepithelial transport of Na+ is the facilitated diffusion of Na+ across the apical membrane via Na+-specific, amiloride-sensitive channels. We report here the first direct measurements of single, amiloride-sensitive Na+ channel activity. The channel was isolated after incorporation of purified apical membrane vesicles from A6 cells into planar lipid bilayers. The channel had the following characteristics: single-channel conductance ranged from 4 to 80 pS at 200 mM NaCl; it was perfectly cation-selective; amiloride reduced the open-state conductance in a dose-dependent fashion when present in the cis compartment, and induced flickering when present in the trans chamber; channel conductance and gating were voltage-independent; and the Na+/K+ selectivity ratio of the channel was 2:1.

摘要

高电阻上皮细胞将钠从管腔侧主动转运至血液。醛固酮和血管加压素刺激这种钠转运系统;利尿药氨氯地平以可逆方式抑制它。Na⁺跨上皮转运的第一步是Na⁺通过Na⁺特异性、氨氯地平敏感通道经顶端膜的易化扩散。我们在此报告了对单个氨氯地平敏感Na⁺通道活性的首次直接测量。该通道是在将来自A6细胞的纯化顶端膜囊泡整合到平面脂质双分子层后分离得到的。该通道具有以下特性:在200 mM NaCl时,单通道电导范围为4至80 pS;它具有完美的阳离子选择性;当顺式隔室中存在氨氯地平时,氨氯地平以剂量依赖性方式降低开放态电导,而当反式隔室中存在时会诱导闪烁;通道电导和门控与电压无关;并且该通道的Na⁺/K⁺选择性比为2:1。

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