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Conserved F-actin dynamics and force transmission at cell adhesions

机译:保守的F-肌动蛋白动力学和细胞黏附力传递

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摘要

Adhesions are a central mechanism by which cells mechanically interact with the surrounding extracellular matrix (ECM) and neighboring cells. In both cell-ECM and cell-cell adhesions, forces generated within the actin cytoskeleton are transmitted to the surrounding environment and are essential for numerous morphogenic processes. Despite differences in many molecular components that regulate cell-cell and cell-ECM adhesions, the roles of F-actin dynamics and mechanical forces in adhesion regulation are surprisingly similar. Moreover, force transmission at adhesions occurs concomitantly with dynamic F-actin; proteins comprising the adhesion of F-actin to the plasma membrane must accommodate this movement while still facilitating force transmission. Thus, despite different molecular architectures, integrin and cadherin-mediated adhesions operate with common biophysical characteristics to transmit and respond to mechanical forces in multicellular tissue.
机译:粘附是细胞与周围细胞外基质(ECM)和邻近细胞机械相互作用的主要机制。在细胞ECM和细胞之间的粘附中,肌动蛋白细胞骨架内产生的力会传递到周围环境,并且对于许多形态发生过程至关重要。尽管在调节细胞-细胞和细胞-ECM粘附力的许多分子成分上存在差异,但是F-肌动蛋白动力学和机械力在粘附力调节中的作用令人惊讶地相似。此外,粘着力的传递与动态F-肌动蛋白同时发生。包含F-肌动蛋白与质膜的粘附力的蛋白质必须适应这种运动,同时仍然促进力的传递。因此,尽管分子结构不同,整联蛋白和钙粘蛋白介导的粘附仍具有共同的生物物理特征,以传递和响应多细胞组织中的机械力。

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