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Cryo-EM structure of the mechanically activated ion channel OSCA1.2

机译:机械活化离子通道OSCA1.2的Cryo-EM结构

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摘要

Mechanically activated ion channels underlie touch, hearing, shear-stress sensing, and response to turgor pressure. OSCA/TMEM63s are a newly-identified family of eukaryotic mechanically activated ion channels opened by membrane tension. The structural underpinnings of OSCA/TMEM63 function are not explored. Here, we elucidate high resolution cryo-electron microscopy structures of OSCA1.2, revealing a dimeric architecture containing eleven transmembrane helices per subunit and surprising topological similarities to TMEM16 proteins. We locate the ion permeation pathway within each subunit by demonstrating that a conserved acidic residue is a determinant of channel conductance. Molecular dynamics simulations reveal membrane interactions, suggesting the role of lipids in OSCA1.2 gating. These results lay a foundation to decipher how the structural organization of OSCA/TMEM63 is suited for their roles as MA ion channels.
机译:机械激活的离子通道是触摸,听觉,剪切应力感测和对压力的响应的基础。 OSCA / TMEM63s是新近鉴定的通过膜张力打开的真核机械激活离子通道家族。没有探讨OSCA / TMEM63功能的结构基础。在这里,我们阐明了OSCA1.2的高分辨率低温电子显微镜结构,揭示了一个二聚体结构,每个亚基包含11个跨膜螺旋,并且与TMEM16蛋白具有令人惊讶的拓扑相似性。通过证明保守的酸性残基是通道电导的决定因素,我们在每个亚基内定位了离子渗透途径。分子动力学模拟揭示了膜相互作用,表明脂质在OSCA1.2门控中的作用。这些结果为破译OSCA / TMEM63的结构组织如何适合其作为MA离子通道的基础奠定了基础。

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