Force-induced conformational changes in PIEZO1

被引:0
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作者
Yi-Chih Lin
Yusong R. Guo
Atsushi Miyagi
Jesper Levring
Roderick MacKinnon
Simon Scheuring
机构
[1] Weill Cornell Medicine,Department of Anesthesiology
[2] Weill Cornell Medicine,Department of Physiology and Biophysics
[3] TheRockefeller University,Laboratory of Molecular Neurobiology and Biophysics, Howard Hughes Medical Institute
来源
Nature | 2019年 / 573卷
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摘要
PIEZO1 is a mechanosensitive channel that converts applied force into electrical signals. Partial molecular structures show that PIEZO1 is a bowl-shaped trimer with extended arms. Here we use cryo-electron microscopy to show that PIEZO1 adopts different degrees of curvature in lipid vesicles of different sizes. We also use high-speed atomic force microscopy to analyse the deformability of PIEZO1 under force in membranes on a mica surface, and show that PIEZO1 can be flattened reversibly into the membrane plane. By approximating the absolute force applied, we estimate a range of values for the mechanical spring constant of PIEZO1. Both methods of microscopy demonstrate that PIEZO1 can deform its shape towards a planar structure. This deformation could explain how lateral membrane tension can be converted into a conformation-dependent change in free energy to gate the PIEZO1 channel in response to mechanical perturbations.
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页码:230 / 234
页数:4
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