跨膜蛋白
生物物理学
门控
跨膜结构域
化学
蛋白质亚单位
突变
斑马鱼
质子输运
蛋白质结构
离子通道
质子
钾通道
立体化学
氨基酸
生物化学
膜
生物
突变
受体
量子力学
基因
物理
作者
Kei Saotome,Bochuan Teng,Che Chun Tsui,Wen-Hsin Lee,Yu-Hsiang Tu,Joshua P. Kaplan,Mark S.P. Sansom,Emily R. Liman,Andrew B. Ward
标识
DOI:10.1038/s41594-019-0235-9
摘要
Otopetrins (Otop1–Otop3) comprise one of two known eukaryotic proton-selective channel families. Otop1 is required for otoconia formation and a candidate mammalian sour taste receptor. Here we report cryo-EM structures of zebrafish Otop1 and chicken Otop3 in lipid nanodiscs. The structures reveal a dimeric architecture, with each subunit forming 12 transmembrane helices divided into structurally similar amino (N) and carboxy (C) domains. Cholesterol-like molecules occupy various sites in Otop1 and Otop3 and occlude a central tunnel. In molecular dynamics simulations, hydrophilic vestibules formed by the N and C domains and in the intrasubunit interface between N and C domains form conduits for water entry into the membrane core, suggesting three potential proton conduction pathways. By mutagenesis, we tested the roles of charged residues in each putative permeation pathway. Our results provide a structural basis for understanding selective proton permeation and gating of this conserved family of proton channels. Otopetrins are proton channels and candidate sour taste receptors. Cryo-EM structures of zebrafish Otop1 and chicken Otop3 reveal potential proton conduction pathways.
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