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TMEM175 是一种调节溶酶体功能的细胞器 K(+) 通道。

TMEM175 Is an Organelle K(+) Channel Regulating Lysosomal Function.

机构信息

Department of Biology, University of Pennsylvania, 415 South University Avenue, Philadelphia, PA 19104, USA.

Paris Descartes University, Sorbonne Paris Cité, Neurophotonics Laboratory, Centre National de la Recherche Scientifique UMR8250, 45 rue des Saints Pères, 75006 Paris, France.

出版信息

Cell. 2015 Aug 27;162(5):1101-12. doi: 10.1016/j.cell.2015.08.002.

Abstract

Potassium is the most abundant ion to face both plasma and organelle membranes. Extensive research over the past seven decades has characterized how K(+) permeates the plasma membrane to control fundamental processes such as secretion, neuronal communication, and heartbeat. However, how K(+) permeates organelles such as lysosomes and endosomes is unknown. Here, we directly recorded organelle K(+) conductance and discovered a major K(+)-selective channel KEL on endosomes and lysosomes. KEL is formed by TMEM175, a protein with unknown function. Unlike any of the ∼80 plasma membrane K(+) channels, TMEM175 has two repeats of 6-transmembrane-spanning segments and has no GYG K(+) channel sequence signature-containing, pore-forming P loop. Lysosomes lacking TMEM175 exhibit no K(+) conductance, have a markedly depolarized ΔΨ and little sensitivity to changes in [K(+)], and have compromised luminal pH stability and abnormal fusion with autophagosomes during autophagy. Thus, TMEM175 comprises a K(+) channel that underlies the molecular mechanism of lysosomal K(+) permeability.

摘要

钾是最丰富的离子,面临着血浆和细胞器膜。在过去的七十年里,大量的研究已经描述了 K(+)如何渗透到质膜中,以控制分泌、神经元通讯和心跳等基本过程。然而,K(+)如何渗透到溶酶体和内体等细胞器中尚不清楚。在这里,我们直接记录了细胞器 K(+)电导,发现了一个主要的 K(+)-选择性通道 KEL 在溶酶体和内体上。KEL 由 TMEM175 组成,这是一种具有未知功能的蛋白质。与任何 80 个左右的质膜 K(+)通道不同,TMEM175 有两个重复的 6 次跨膜片段,没有 GYG K(+)通道序列特征的含有,孔形成 P 环。缺乏 TMEM175 的溶酶体没有 K(+)电导,具有明显的去极化 ΔΨ,对 [K(+)]的变化几乎没有敏感性,并且内腔 pH 稳定性受损,在自噬过程中与自噬体异常融合。因此,TMEM175 组成了一个 K(+)通道,它是溶酶体 K(+)通透性的分子机制的基础。

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