机械敏感通道
机械转化
机械反应
离子通道
压电1
纳米技术
伸展激活离子通道
化学
神经科学
生物
材料科学
遗传学
受体
作者
Jennifer M. Kefauver,Andrew B. Ward,Ardem Patapoutian
出处
期刊:Nature
[Springer Nature]
日期:2020-11-25
卷期号:587 (7835): 567-576
被引量:397
标识
DOI:10.1038/s41586-020-2933-1
摘要
The ability to sense physical forces is conserved across all organisms. Cells convert mechanical stimuli into electrical or chemical signals via mechanically activated ion channels. In recent years, the identification of new families of mechanosensitive ion channels—such as PIEZO and OSCA/TMEM63 channels—along with surprising insights into well-studied mechanosensitive channels have driven further developments in the mechanotransduction field. Several well-characterized mechanosensory roles such as touch, blood-pressure sensing and hearing are now linked with primary mechanotransducers. Unanticipated roles of mechanical force sensing continue to be uncovered. Furthermore, high-resolution structures representative of nearly every family of mechanically activated channel described so far have underscored their diversity while advancing our understanding of the biophysical mechanisms of pressure sensing. Here we summarize recent discoveries in the physiology and structures of known mechanically activated ion channel families and discuss their implications for understanding the mechanisms of mechanical force sensing. This Review summarizes developments in the field of mechanically activated ion channels, which have been driven by the increasing breadth of structural studies.
科研通智能强力驱动
Strongly Powered by AbleSci AI