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OSCA/TMEM63 通道机械敏感性中的机械偶联机制。

A mechanical-coupling mechanism in OSCA/TMEM63 channel mechanosensitivity.

机构信息

Fudan University, Shanghai, 200433, China.

Laboratory of Cell Fate Control, School of Life Sciences, Westlake University, Hangzhou, 310000, China.

出版信息

Nat Commun. 2023 Jul 4;14(1):3943. doi: 10.1038/s41467-023-39688-8.

Abstract

Mechanosensitive (MS) ion channels are a ubiquitous type of molecular force sensor sensing forces from the surrounding bilayer. The profound structural diversity in these channels suggests that the molecular mechanisms of force sensing follow unique structural blueprints. Here we determine the structures of plant and mammalian OSCA/TMEM63 proteins, allowing us to identify essential elements for mechanotransduction and propose roles for putative bound lipids in OSCA/TMEM63 mechanosensation. Briefly, the central cavity created by the dimer interface couples each subunit and modulates dimeric OSCA/TMEM63 channel mechanosensitivity through the modulating lipids while the cytosolic side of the pore is gated by a plug lipid that prevents the ion permeation. Our results suggest that the gating mechanism of OSCA/TMEM63 channels may combine structural aspects of the 'lipid-gated' mechanism of MscS and TRAAK channels and the calcium-induced gating mechanism of the TMEM16 family, which may provide insights into the structural rearrangements of TMEM16/TMC superfamilies.

摘要

机械敏感性 (MS) 离子通道是一种普遍存在的分子力传感器,可感知周围双层膜的力。这些通道在结构上存在显著的多样性,这表明力感应的分子机制遵循独特的结构蓝图。在这里,我们确定了植物和哺乳动物 OSCA/TMEM63 蛋白的结构,使我们能够识别机械转导的基本元件,并提出 OSCA/TMEM63 机械感应中假定结合脂质的作用。简而言之,二聚体界面形成的中央腔连接每个亚基,并通过调节脂质调节二聚体 OSCA/TMEM63 通道的机械敏感性,而孔的胞质侧由阻止离子渗透的“塞子”脂质控制。我们的研究结果表明,OSCA/TMEM63 通道的门控机制可能结合了 MscS 和 TRAAK 通道的“脂质门控”机制以及 TMEM16 家族的钙诱导门控机制的结构方面,这可能为 TMEM16/TMC 超家族的结构重排提供深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7db/10319725/d9b5819ec36d/41467_2023_39688_Fig1_HTML.jpg

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