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Regulatory–auxiliary subunits of CLC chloride channel–transport proteins

机译:CLC氯离子通道转运蛋白的调节辅助亚基

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摘要

The CLC family of chloride channels and transporters is composed by nine members, but only three of them, ClC-Ka/b, ClC-7 and ClC-2, have been found so far associated with auxiliary subunits. These CLC regulatory subunits are small proteins that present few common characteristics among them, both structurally and functionally, and their effects on the corresponding CLC protein are different. Barttin, a protein with two transmembrane domains, is essential for the membrane localization of ClC-K proteins and their activity in the kidney and inner ear. Ostm1 is a protein with a single transmembrane domain and a highly glycosylated N-terminus. Unlike the other two CLC auxiliary subunits, Ostm1 shows a reciprocal relationship with ClC-7 for their stability. The subcellular localization of Ostm1 depends on ClC-7 and not the other way around. ClC-2 is active on its own, but GlialCAM, a transmembrane cell adhesion molecule with two extracellular immunoglobulin (Ig)-like domains, regulates its subcellular localization and activity in glial cells. The common theme for these three proteins is their requirement for a proper homeostasis, since their malfunction leads to distinct diseases. We will review here their properties and their role in normal chloride physiology and the pathological consequences of their improper function.
机译:CLC氯离子通道和转运蛋白家族由9个成员组成,但到目前为止,只有3个ClC-Ka / b,ClC-7和ClC-2与辅助亚基有关。这些CLC调节亚基是小的蛋白质,在结构和功能上几乎没有共同特征,它们对相应CLC蛋白质的作用也不同。 Barttin是一种具有两个跨膜结构域的蛋白,对于ClC-K蛋白的膜定位及其在肾脏和内耳的活性至关重要。 Ostm1是具有单个跨膜结构域和高度糖基化的N端的蛋白质。与其他两个CLC辅助亚基不同,Ostm1的稳定性与ClC-7呈倒数关系。 Ostm1的亚细胞定位取决于ClC-7,而不是相反。 ClC-2本身具有活性,但GlialCAM是具有两个细胞外免疫球蛋白(Ig)样结构域的跨膜细胞粘附分子,可调节其在胶质细胞中的亚细胞定位和活性。这三种蛋白质的共同主题是它们需要适当的体内平衡,因为它们的功能障碍会导致不同的疾病。我们将在这里回顾它们的性质及其在正常氯化物生理中的作用,以及它们功能不正常的病理后果。

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