首页> 外文期刊>The Journal of Physiology >A tale of two CLCs: biophysical insights toward understanding ClC-5 and ClC-7 function in endosomes and lysosomes
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A tale of two CLCs: biophysical insights toward understanding ClC-5 and ClC-7 function in endosomes and lysosomes

机译:两个CLC的故事:对理解CLC-5和CLC-7在内体和溶酶体中的生物物理洞察力

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摘要

The CLC protein family comprises both Cl-channels and H+-coupled anion transporters. The understanding of the critical role of CLC proteins in a number of physiological functions has greatly contributed to a revision of the classical paradigm that attributed to Cl- ions only a marginal role in human physiology. The endosomal ClC-5 and the lysosomal ClC-7 are the best characterized human CLC transporters. Their dysfunction causes Dent's disease and osteopetrosis, respectively. It had been originally proposed that they would provide a Cl-shunt conductance allowing efficient acidification of intracellular compartments. However, this model seems to conflict with the transport properties of these proteins and with recent physiological evidence. Currently, there is no consensus on their specific physiological role. CLC proteins present also a number of peculiar biophysical properties, such as the dimeric architecture, the co-existence of intrinsically different thermodynamic modes of transport based on similar structural principles, and the gating mechanism recently emerging for the transporters, just to name a few. This review focuses on the biophysical properties and physiological roles of ClC-5 and ClC-7.
机译:CLC蛋白质家族包含Cl-通道和H +耦合的阴离子转运蛋白。对CLC蛋白在许多生理功能中的关键作用的理解极大地有助于修订归因于CLIENS的典型范式,这些范式归因于人体生理学中的边际作用。内体CLC-5和溶酶体CLC-7是最佳的人类CLC转运蛋白。他们的功能障碍分别导致凹痕的疾病和骨质病症。最初提出了它们将提供Cl-分流的电导,从而允许细胞内隔室的有效酸化。然而,该模型似乎与这些蛋白质的运输性质和最近的生理证据发生冲突。目前,对其特定的生理作用没有共识。 CLC蛋白还存在许多特殊的生物物理特性,例如二聚体结构,基于类似的结构原理,基于类似的结构原理的本质上不同的热力学模式的共存,以及最近为运输车出现的门控机制,只是为了命名几个。本综述重点介绍了CLC-5和CLC-7的生物物理性质和生理角色。

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