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首页> 外文期刊>Nature Communications >Frustrated endocytosis controls contractility-independent mechanotransduction at clathrin-coated structures
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Frustrated endocytosis controls contractility-independent mechanotransduction at clathrin-coated structures

机译:沮丧的内吞作用在网格蛋白涂层结构上控制了与收缩力无关的机械传导

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It is generally assumed that cells interrogate the mechanical properties of their environment by pushing and pulling on the extracellular matrix (ECM). For instance, acto-myosin-dependent contraction forces exerted at focal adhesions (FAs) allow the cell to actively probe substrate elasticity. Here, we report that a subset of long-lived and flat clathrin-coated structures (CCSs), also termed plaques, are contractility-independent mechanosensitive signaling platforms. We observed that plaques assemble in response to increasing substrate rigidity and that this is independent of FAs, actin and myosin-II activity. We show that plaque assembly depends on αvβ5?integrin, and is a consequence of frustrated endocytosis whereby αvβ5 tightly engaged with the stiff substrate locally stalls CCS dynamics. We also report that plaques serve as platforms for receptor-dependent signaling and are required for increased Erk activation and cell proliferation on stiff environments. We conclude that CCSs are mechanotransduction structures that sense substrate rigidity independently of cell contractility.
机译:通常认为细胞通过推拉细胞外基质(ECM)来询问其周围环境的机械性能。例如,在粘着斑(FA)处施加的依赖肌动球蛋白的收缩力使细胞能够主动探测底物的弹性。在这里,我们报告的长寿和扁平网格蛋白涂层结构(CCSs)的一个子集,也称为斑块,是不依赖于收缩力的机械敏感信号平台。我们观察到噬菌斑组装响应增加的基板刚度,并且这独立于FA,肌动蛋白和肌球蛋白II活性。我们显示斑块组装取决于αvβ5?整联蛋白,并且是沮丧的胞吞作用的结果,其中αvβ5与坚硬的底物紧密结合,局部停滞了CCS动力学。我们还报告斑块作为受体依赖信号转导的平台,并且是增加Erk活化和在恶劣环境下细胞增殖所必需的。我们得出的结论是CCSs是机械转导结构,可独立于细胞收缩力感应底物的刚性。

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