机械转化
细胞骨架
细胞生物学
肌动蛋白细胞骨架
钙粘蛋白
门控
肌动蛋白
压电1
胞浆
细胞内
化学
生物物理学
生物
离子通道
细胞
机械敏感通道
生物化学
受体
酶
作者
Jing Wang,Jinghui Jiang,Xuzhong Yang,Gewei Zhou,Li Wang,Bailong Xiao
出处
期刊:Cell Reports
[Cell Press]
日期:2022-02-01
卷期号:38 (6): 110342-110342
被引量:211
标识
DOI:10.1016/j.celrep.2022.110342
摘要
The mechanically activated Piezo channel plays a versatile role in conferring mechanosensitivity to various cell types. However, how it incorporates its intrinsic mechanosensitivity and cellular components to effectively sense long-range mechanical perturbation across a cell remains elusive. Here we show that Piezo channels are biochemically and functionally tethered to the actin cytoskeleton via the cadherin-β-catenin mechanotransduction complex, whose perturbation significantly impairs Piezo-mediated responses. Mechanistically, the adhesive extracellular domain of E-cadherin interacts with the cap domain of Piezo1, which controls the transmembrane gate, while its cytosolic tail might interact with the cytosolic domains of Piezo1, which are in close proximity to its intracellular gates, allowing a direct focus of adhesion-cytoskeleton-transmitted force for gating. Specific disruption of the intermolecular interactions prevents cytoskeleton-dependent gating of Piezo1. Thus, we propose a force-from-filament model to complement the previously suggested force-from-lipids model for mechanogating of Piezo channels, enabling them to serve as versatile and tunable mechanotransducers.
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