Yao Mingxi, Tijore Ajay, Cheng Delfine, Li Jinyuan Vero, Hariharan Anushya, Martinac Boris, Tran Van Nhieu Guy, Cox Charles D, Sheetz Michael
Department of Biomedical Engineering, Southern University of Science and Technology, Shenzhen 518055, China.
Guangdong Provincial Key Laboratory of Advanced Biomaterials, Southern University of Science and Technology, Shenzhen 518055, China.
Sci Adv. 2022 Nov 11;8(45):eabo1461. doi: 10.1126/sciadv.abo1461. Epub 2022 Nov 9.
Mechanosensing is an integral part of many physiological processes including stem cell differentiation, fibrosis, and cancer progression. Two major mechanosensing systems-focal adhesions and mechanosensitive ion channels-can convert mechanical features of the microenvironment into biochemical signals. We report here unexpectedly that the mechanosensitive calcium-permeable channel Piezo1, previously perceived to be diffusive on plasma membranes, binds to matrix adhesions in a force-dependent manner, promoting cell spreading, adhesion dynamics, and calcium entry in normal but not in most cancer cells tested except some glioblastoma lines. A linker domain in Piezo1 is needed for binding to adhesions, and overexpression of the domain blocks Piezo1 binding to adhesions, decreasing adhesion size and cell spread area. Thus, we suggest that Piezo1 is a previously unidentified component of focal adhesions in nontransformed cells that catalyzes adhesion maturation and growth through force-dependent calcium signaling, but this function is absent in most cancer cells.
机械传感是许多生理过程不可或缺的一部分,包括干细胞分化、纤维化和癌症进展。两种主要的机械传感系统——粘着斑和机械敏感离子通道——可将微环境的机械特性转化为生化信号。我们在此意外报告,机械敏感的钙通透通道Piezo1,此前被认为在质膜上呈扩散状态,却以力依赖的方式与基质粘着斑结合,促进正常细胞而非大多数受试癌细胞(除某些胶质母细胞瘤细胞系外)的细胞铺展、粘着动力学及钙内流。Piezo1中的一个连接域是与粘着斑结合所必需的,该结构域的过表达会阻止Piezo1与粘着斑结合,减小粘着斑大小和细胞铺展面积。因此,我们认为Piezo1是未转化细胞中粘着斑的一个此前未被识别的成分,它通过力依赖的钙信号催化粘着斑成熟和生长,但大多数癌细胞缺乏此功能。