Balzac Fiorella, Avolio Maria, Degani Simona, Kaverina Irina, Torti Mauro, Silengo Lorenzo, Small J Victor, Retta Saverio Francesco
Department of Genetics, Biology and Biochemistry, University of Torino, Via Santena 5/bis, Torino, 10126, Italy.
J Cell Sci. 2005 Oct 15;118(Pt 20):4765-83. doi: 10.1242/jcs.02584.
The coordinate modulation of cadherin and integrin functions plays an essential role in fundamental physiological and pathological processes, including morphogenesis and cancer. However, the molecular mechanisms underlying the functional crosstalk between cadherins and integrins are still elusive. Here, we demonstrate that the small GTPase Rap1, a crucial regulator of the inside-out activation of integrins, is a target for E-cadherin-mediated outside-in signaling. In particular, we show that a strong activation of Rap1 occurs upon adherens junction disassembly that is triggered by E-cadherin internalization and trafficking along the endocytic pathway. By contrast, Rap1 activity is not influenced by integrin outside-in signaling. Furthermore, we demonstrate that the E-cadherin endocytosis-dependent activation of Rap1 is associated with and controlled by an increased Src kinase activity, and is paralleled by the colocalization of Rap1 and E-cadherin at the perinuclear Rab11-positive recycling endosome compartment, and the association of Rap1 with a subset of E-cadherin-catenin complexes that does not contain p120ctn. Conversely, Rap1 activity is suppressed by the formation of E-cadherin-dependent cell-cell junctions as well as by agents that inhibit either Src activity or E-cadherin internalization and intracellular trafficking. Finally, we demonstrate that the E-cadherin endocytosis-dependent activation of Rap1 is associated with and is required for the formation of integrin-based focal adhesions. Our findings provide the first evidence of an E-cadherin-modulated endosomal signaling pathway involving Rap1, and suggest that cadherins may have a novel modulatory role in integrin adhesive functions by fine-tuning Rap1 activation.
钙黏蛋白和整合素功能的协同调节在包括形态发生和癌症在内的基本生理和病理过程中起着至关重要的作用。然而,钙黏蛋白和整合素之间功能相互作用的分子机制仍不清楚。在这里,我们证明小GTP酶Rap1是整合素由内向外激活的关键调节因子,是E-钙黏蛋白介导的由外向内信号传导的靶点。特别是,我们表明,Rap1的强烈激活发生在由E-钙黏蛋白内化和沿内吞途径运输所触发的黏附连接解体时。相比之下,Rap1活性不受整合素由外向内信号传导的影响。此外,我们证明,Rap1的E-钙黏蛋白内吞依赖性激活与Src激酶活性增加相关并受其控制,并且与Rap1和E-钙黏蛋白在核周Rab11阳性再循环内体区室的共定位以及Rap1与不含p120ctn的E-钙黏蛋白-连环蛋白复合物的一个亚群的结合同时发生。相反,Rap1活性被E-钙黏蛋白依赖性细胞-细胞连接的形成以及抑制Src活性或E-钙黏蛋白内化和细胞内运输的试剂所抑制。最后,我们证明,Rap1的E-钙黏蛋白内吞依赖性激活与基于整合素的粘着斑的形成相关并且是其形成所必需的。我们的发现提供了涉及Rap1的E-钙黏蛋白调节的内体信号通路的首个证据,并表明钙黏蛋白可能通过微调Rap1激活在整合素黏附功能中具有新的调节作用。