A Mechanical Checkpoint Controls Multicellular Growth through YAP/TAZ Regulation by Actin-Processing Factors

生物 细胞生物学 河马信号通路 多细胞生物 机械转化 细胞外基质 肌动蛋白 粘合连接 信号转导 钙粘蛋白 细胞 遗传学
作者
Mariaceleste Aragona,Tito Panciera,Andrea Manfrin,Stefano Giulitti,Federica Michielin,Nicola Elvassore,Sirio Dupont,Stefano Piccolo
出处
期刊:Cell [Elsevier]
卷期号:154 (5): 1047-1059 被引量:1569
标识
DOI:10.1016/j.cell.2013.07.042
摘要

Key cellular decisions, such as proliferation or growth arrest, typically occur at spatially defined locations within tissues. Loss of this spatial control is a hallmark of many diseases, including cancer. Yet, how these patterns are established is incompletely understood. Here, we report that physical and architectural features of a multicellular sheet inform cells about their proliferative capacity through mechanical regulation of YAP and TAZ, known mediators of Hippo signaling and organ growth. YAP/TAZ activity is confined to cells exposed to mechanical stresses, such as stretching, location at edges/curvatures contouring an epithelial sheet, or stiffness of the surrounding extracellular matrix. We identify the F-actin-capping/severing proteins Cofilin, CapZ, and Gelsolin as essential gatekeepers that limit YAP/TAZ activity in cells experiencing low mechanical stresses, including contact inhibition of proliferation. We propose that mechanical forces are overarching regulators of YAP/TAZ in multicellular contexts, setting responsiveness to Hippo, WNT, and GPCR signaling.
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