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由上皮钠通道亚基的不同组合产生的通道多样性。

Diversity of channels generated by different combinations of epithelial sodium channel subunits.

作者信息

McNicholas C M, Canessa C M

机构信息

Department of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, Connecticut 06520-8026, USA.

出版信息

J Gen Physiol. 1997 Jun;109(6):681-92. doi: 10.1085/jgp.109.6.681.

Abstract

The epithelial sodium channel is a multimeric protein formed by three homologous subunits: alpha, beta, and gamma; each subunit contains only two transmembrane domains. The level of expression of each of the subunits is markedly different in various Na+ absorbing epithelia raising the possibility that channels with different subunit composition can function in vivo. We have examined the functional properties of channels formed by the association of alpha with beta and of alpha with gamma in the Xenopus oocyte expression system using two-microelectrode voltage clamp and patch-clamp techniques. We found that alpha beta channels differ from alpha gamma channels in the following functional properties: (a) alpha beta channels expressed larger Na+ than Li+ currents (INa+/ILi+ 1.2) whereas alpha gamma channels expressed smaller Na+ than Li+ currents (INa+/ILi+ 0.55); (b) the Michaelis Menten constants (Km of activation of current by increasing concentrations of external Na+ and Li+ of alpha beta channels were larger (Km > 180 mM) than those of alpha gamma channels (Km of 35 and 50 mM, respectively); (c) single channel conductances of alpha beta channels (5.1 pS for Na+ and 4.2 pS for Li+) were smaller than those of alpha gamma channels (6.5 pS for Na+ and 10.8 pS for Li+); (d) the half-inhibition constant (Ki) of amiloride was 20-fold larger for alpha beta channels than for alpha gamma channels whereas the Ki of guanidinium was equal for both alpha beta and alpha gamma. To identify the domains in the channel subunits involved in amiloride binding, we constructed several chimeras that contained the amino terminus of the gamma subunit and the carboxy terminus of the beta subunit. A stretch of 15 amino acids, immediately before the second transmembrane domain of the beta subunit, was identified as the domain conferring lower amiloride affinity to the alpha beta channels. We provide evidence for the existence of two distinct binding sites for the amiloride molecule: one for the guanidium moiety and another for the pyrazine ring. At least two subunits alpha with beta or gamma contribute to these binding sites. Finally, we show that the most likely stoichiometry of alpha beta and alpha gamma channels is 1 alpha: 1 beta and 1 alpha: 1 gamma, respectively.

摘要

上皮钠通道是一种多聚体蛋白,由三个同源亚基α、β和γ组成;每个亚基仅包含两个跨膜结构域。各亚基的表达水平在各种钠吸收上皮细胞中明显不同,这增加了具有不同亚基组成的通道在体内发挥功能的可能性。我们利用双电极电压钳和膜片钳技术,在非洲爪蟾卵母细胞表达系统中研究了α与β以及α与γ结合形成的通道的功能特性。我们发现αβ通道与αγ通道在以下功能特性上存在差异:(a)αβ通道表达的钠电流大于锂电流(INa+/ILi+为1.2),而αγ通道表达的钠电流小于锂电流(INa+/ILi+为0.55);(b)αβ通道通过增加细胞外钠和锂浓度激活电流的米氏常数(Km)大于αγ通道(分别为Km>180 mM和35 mM及50 mM);(c)αβ通道的单通道电导(钠为5.1 pS,锂为4.2 pS)小于αγ通道(钠为6.5 pS,锂为10.8 pS);(d)阿米洛利对αβ通道的半抑制常数(Ki)比对αγ通道大20倍,而胍对αβ和αγ通道的Ki相等。为了确定通道亚基中参与阿米洛利结合的结构域,我们构建了几个嵌合体,这些嵌合体包含γ亚基的氨基末端和β亚基的羧基末端。在β亚基第二个跨膜结构域之前紧邻的一段15个氨基酸被确定为赋予αβ通道较低阿米洛利亲和力的结构域。我们提供了证据表明阿米洛利分子存在两个不同的结合位点:一个用于胍基部分,另一个用于吡嗪环。至少两个亚基α与β或γ对这些结合位点有贡献。最后,我们表明αβ和αγ通道最可能的化学计量比分别为1α:1β和1α:1γ。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24d2/2217047/fe6ca669e7b5/JGP.7398f1.jpg

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