远曲小管
氯离子通道
离子通道
神经退行性变
化学
细胞生物学
肾小管酸中毒
位置克隆
离子运输机
转运蛋白
生物
生物化学
肾
内分泌学
内科学
重吸收
医学
膜
突变体
酸中毒
基因
受体
疾病
摘要
Abstract After providing a personal description of the convoluted path leading 25 years ago to the molecular identification of the Torpedo Cl − channel ClC‐0 and the discovery of the CLC gene family, I succinctly describe the general structural and functional features of these ion transporters before giving a short overview of mammalian CLCs. These can be categorized into plasma membrane Cl − channels and vesicular Cl − /H + ‐exchangers. They are involved in the regulation of membrane excitability, transepithelial transport, extracellular ion homeostasis, endocytosis and lysosomal function. Diseases caused by CLC dysfunction include myotonia, neurodegeneration, deafness, blindness, leukodystrophy, male infertility, renal salt loss, kidney stones and osteopetrosis, revealing a surprisingly broad spectrum of biological roles for chloride transport that was unsuspected when I set out to clone the first voltage‐gated chloride channel.
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