Eye Center of the Second Affiliated Hospital, School of Medicine, Zhejiang University, Hangzhou 310058, China.
The Institute of Translational Medicine, Zhejiang University, Hangzhou 310058, China.
Development. 2020 Nov 19;147(22):dev184457. doi: 10.1242/dev.184457.
Adherens junction remodeling regulated by apical polarity proteins constitutes a major driving force for tissue morphogenesis, although the precise mechanism remains inconclusive. Here, we report that, in zebrafish, the Crumbs complex component MPP5a interacts with small GTPase Rab11 in Golgi to transport cadherin and Crumbs components synergistically to the apical domain, thus establishing apical epithelial polarity and adherens junctions. In contrast, Par complex recruited by MPP5a is incapable of interacting with Rab11 but might assemble cytoskeleton to facilitate cadherin exocytosis. In accordance, dysfunction of MPP5a induces an invasive migration of epithelial cells. This adherens junction remodeling pattern is frequently observed in zebrafish lens epithelial cells and neuroepithelial cells. The data identify an unrecognized MPP5a-Rab11 complex and describe its essential role in guiding apical polarization and zonula adherens formation in epithelial cells.
黏着连接重塑受顶端极性蛋白调控,是组织形态发生的主要驱动力,但其确切机制尚不清楚。在这里,我们报告在斑马鱼中,Crumb 复合物成分 MPP5a 与高尔基体中的小 GTPase Rab11 相互作用,协同将钙黏蛋白和 Crumb 复合物成分运输到顶端域,从而建立顶端上皮极性和黏着连接。相比之下,由 MPP5a 招募的 Par 复合物不能与 Rab11 相互作用,但可能组装细胞骨架以促进钙黏蛋白的胞吐作用。相应地,MPP5a 的功能障碍会诱导上皮细胞的侵袭性迁移。这种黏着连接重塑模式在斑马鱼晶状体上皮细胞和神经上皮细胞中经常观察到。该数据确定了一个未被识别的 MPP5a-Rab11 复合物,并描述了其在指导上皮细胞顶端极化和黏着连接形成中的重要作用。