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Crk associates with a multimolecular Paxillin/GIT2/beta-PIX complex and promotes Rac-dependent relocalization of Paxillin to focal contacts

机译:Crk与多分子Paxillin / GIT2 / beta-PIX复合物缔合,并促进Paxillin依赖Rac的重新定位至局部接触

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We have previously demonstrated that the CrkII and CrkL adapter proteins are required for the spreading of epithelial colonies and the breakdown of adherens junctions in response to hepatocyte growth factor. When overexpressed, CrkII and CrkL promote lamellipodia formation, cell spreading, and the loss of epithelial adherens junctions in the absence of hepatocyte growth factor. The exact mechanism by which Crk proteins elicit these changes is unclear. We show that the overexpression of CrkII or CrkL, but not Src homology 2 or amino-terminal Src homology 3 domain mutant Crk proteins, promotes the relocalization of Paxillin to focal contacts throughout the cell and within lamellipodia in a Rac-dependent manner. In stable cell lines overexpressing CrkII, enhanced lamellipodia formation and cell spreading correlate with an increased association of CrkII with Paxillin, GIT2 (an ARF-GAP) and beta-PIX (a Rac1 exchange factor). Mutants of Paxillin that fail to associate with Crk or GIT2, or do not target to focal adhesions inhibit Crk-dependent cell spreading and lamellipodia formation. We conclude from these studies that the association of Crk with Paxillin is important for the spreading of epithelial colonies, by influencing the recruitment of Paxillin to focal complexes and promoting the enhanced assembly of Paxillin/GIT2/beta-PIX complexes. [References: 80]
机译:先前我们已经证明,CrkII和CrkL衔接子蛋白是上皮菌落扩散和响应肝细胞生长因子的粘附连接破坏所必需的。当过表达时,在没有肝细胞生长因子的情况下,CrkII和CrkL会促进lamellipodia的形成,细胞扩散以及上皮粘附连接的丧失。 Crk蛋白引起这些变化的确切机制尚不清楚。我们显示,CrkII或CrkL,但不是Src同源2或氨基末端Src同源3域突变体Crk蛋白的过表达,促进Paxillin的重新定位,使其以局部依赖Rac的方式在整个细胞内和在片状脂膜内形成焦点接触。在过表达CrkII的稳定细胞系中,层状脂蛋白形成和细胞扩散增强与CrkII与Paxillin,GIT2(一种ARF-GAP)和beta-PIX(一种Rac1交换因子)的结合增加有关。无法与Crk或GIT2结合或不能靶向黏附的Paxillin突变体会抑制Crk依赖性细胞扩散和片状脂蛋白形成。我们从这些研究中得出结论,Crk与Paxillin的缔合通过影响Paxillin向局部复合物的募集并促进Paxillin / GIT2 / beta-PIX复合物的增强装配,对于上皮菌落的扩散很重要。 [参考:80]

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