固态核磁共振
化学
脂质体
核磁共振波谱
渗透
分子动力学
氟化物
门控
膜
生物物理学
结晶学
核磁共振
计算化学
立体化学
无机化学
生物化学
物理
生物
作者
Jin Zhang,Dan Song,Florian Karl Schackert,Juan Li,ShengQi Xiang,Changlin Tian,Weimin Gong,Paolo Carloni,Mercedes Alfonso‐Prieto,Chaowei Shi
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2023-08-23
卷期号:9 (34)
被引量:8
标识
DOI:10.1126/sciadv.adg9709
摘要
Solid-state nuclear magnetic resonance (ssNMR) methods can probe the motions of membrane proteins in liposomes at the atomic level and propel the understanding of biomolecular processes for which static structures cannot provide a satisfactory description. In this work, we report our study on the fluoride channel Fluc-Ec1 in phospholipid bilayers based on ssNMR and molecular dynamics simulations. Previously unidentified fluoride binding sites in the aqueous vestibules were experimentally verified by 19F-detected ssNMR. One of the two fluoride binding sites in the polar track was identified as a water molecule by 1H-detected ssNMR. Meanwhile, a dynamic hotspot at loop 1 was observed by comparing the spectra of wild-type Fluc-Ec1 in variant buffer conditions or with its mutants. Therefore, we propose that fluoride conduction in the Fluc channel occurs via a "water-mediated knock-on" permeation mechanism and that loop 1 is a key molecular determinant for channel gating.
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