丛蛋白
信号灯
机械转化
细胞生物学
整合素
内皮干细胞
内皮
细胞骨架
癌症研究
生物
S1PR1型
化学
信号转导
受体
作者
Vedanta Mehta,Pang K-L.,D. Rozbesky,K Nather,A Keen,Dariusz Lachowski,Y Kong,D. Karia,M Ameismeier,Josh Huang,Yun Fang,A. del Rio Hernandez,John S. Reader,E Y Jones,Ellie Tzima
出处
期刊:Nature
[Springer Nature]
日期:2020-02-05
卷期号:578 (7794): 290-295
被引量:63
标识
DOI:10.1038/s41586-020-1979-4
摘要
Shear stress on arteries produced by blood flow is important for vascular development and homeostasis but can also initiate atherosclerosis1. Endothelial cells that line the vasculature use molecular mechanosensors to directly detect shear stress profiles that will ultimately lead to atheroprotective or atherogenic responses2. Plexins are key cell-surface receptors of the semaphorin family of cell-guidance signalling proteins and can regulate cellular patterning by modulating the cytoskeleton and focal adhesion structures3-5. However, a role for plexin proteins in mechanotransduction has not been examined. Here we show that plexin D1 (PLXND1) has a role in mechanosensation and mechanically induced disease pathogenesis. PLXND1 is required for the response of endothelial cells to shear stress in vitro and in vivo and regulates the site-specific distribution of atherosclerotic lesions. In endothelial cells, PLXND1 is a direct force sensor and forms a mechanocomplex with neuropilin-1 and VEGFR2 that is necessary and sufficient for conferring mechanosensitivity upstream of the junctional complex and integrins. PLXND1 achieves its binary functions as either a ligand or a force receptor by adopting two distinct molecular conformations. Our results establish a previously undescribed mechanosensor in endothelial cells that regulates cardiovascular pathophysiology, and provide a mechanism by which a single receptor can exhibit a binary biochemical nature.
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