Department of Biochemistry, Boston University School of Medicine, Boston, MA.
J Cell Biol. 2022 May 2;221(5). doi: 10.1083/jcb.202111002. Epub 2022 Apr 7.
Establishment of apicobasal polarity and the organization of the cytoskeleton must operate coordinately to ensure proper epithelial cell shape and function. However, the precise molecular mechanisms by which polarity complexes directly instruct the cytoskeletal machinery to determine cell shape are poorly understood. Here, we define a mechanism by which the PAR polarity complex (PAR3-PAR6-aPKC) at apical cell junctions leads to efficient assembly of the apical actomyosin network to maintain epithelial cell morphology. We found that the PAR polarity complex recruits the protein DAPLE to apical cell junctions, which in turn triggers a two-pronged mechanism that converges upon assembly of apical actomyosin. More specifically, DAPLE directly recruits the actin-stabilizing protein CD2AP to apical junctions and, concomitantly, activates heterotrimeric G protein signaling in a GPCR-independent manner to favor RhoA-myosin activation. These observations establish DAPLE as a direct molecular link between junctional polarity complexes and the formation of apical cytoskeletal assemblies that support epithelial cell shape.
顶端-基底极性的建立和细胞骨架的组织必须协调运作,以确保上皮细胞的形状和功能正常。然而,极性复合物如何直接指导细胞骨架机制来确定细胞形状的确切分子机制还知之甚少。在这里,我们定义了一种机制,即顶端细胞连接处的 PAR 极性复合物(PAR3-PAR6-aPKC)导致顶端肌动球蛋白网络的有效组装,以维持上皮细胞形态。我们发现,PAR 极性复合物将蛋白 DAPLE 招募到顶端细胞连接处,这反过来又触发了一种双管齐下的机制,汇聚于顶端肌动球蛋白的组装。更具体地说,DAPLE 直接将稳定肌动蛋白的蛋白 CD2AP 招募到顶端连接,并同时以 GPCR 独立的方式激活异三聚体 G 蛋白信号,有利于 RhoA-肌球蛋白的激活。这些观察结果将 DAPLE 确立为连接连接极性复合物和形成支持上皮细胞形状的顶端细胞骨架组装的直接分子联系。