Bae Yong Ho, Mui Keeley L, Hsu Bernadette Y, Liu Shu-Lin, Cretu Alexandra, Razinia Ziba, Xu Tina, Puré Ellen, Assoian Richard K
Department of Pharmacology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Department of Animal Biology, School of Veterinary Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Sci Signal. 2014 Jun 17;7(330):ra57. doi: 10.1126/scisignal.2004838.
Tissue and extracellular matrix (ECM) stiffness is transduced into intracellular stiffness, signaling, and changes in cellular behavior. Integrins and several of their associated focal adhesion proteins have been implicated in sensing ECM stiffness. We investigated how an initial sensing event is translated into intracellular stiffness and a biologically interpretable signal. We found that a pathway consisting of focal adhesion kinase (FAK), the adaptor protein p130Cas (Cas), and the guanosine triphosphatase Rac selectively transduced ECM stiffness into stable intracellular stiffness, increased the abundance of the cell cycle protein cyclin D1, and promoted S-phase entry. Rac-dependent intracellular stiffening involved its binding partner lamellipodin, a protein that transmits Rac signals to the cytoskeleton during cell migration. Our findings establish that mechanotransduction by a FAK-Cas-Rac-lamellipodin signaling module converts the external information encoded by ECM stiffness into stable intracellular stiffness and mechanosensitive cell cycling. Thus, lamellipodin is important not only in controlling cellular migration but also for regulating the cell cycle in response to mechanical signals.
组织和细胞外基质(ECM)的硬度会转化为细胞内的硬度、信号传导以及细胞行为的变化。整合素及其一些相关的粘着斑蛋白已被认为与感知ECM硬度有关。我们研究了最初的感知事件是如何转化为细胞内硬度和具有生物学意义的信号的。我们发现,由粘着斑激酶(FAK)、衔接蛋白p130Cas(Cas)和鸟苷三磷酸酶Rac组成的信号通路可将ECM硬度选择性地转化为稳定的细胞内硬度,增加细胞周期蛋白细胞周期蛋白D1的丰度,并促进S期进入。Rac依赖型细胞内硬化涉及它的结合伴侣片层状肌动蛋白结合蛋白,该蛋白在细胞迁移过程中将Rac信号传递至细胞骨架。我们的研究结果表明,由FAK-Cas-Rac-片层状肌动蛋白结合蛋白信号模块介导的机械转导可将由ECM硬度编码的外部信息转化为稳定的细胞内硬度和机械敏感型细胞周期。因此,片层状肌动蛋白结合蛋白不仅在控制细胞迁移中很重要,而且对于响应机械信号调节细胞周期也很重要。