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Cdc42 and noncanonical Wnt signal transduction pathways cooperate to promote cell polarity

机译:Cdc42和非经典Wnt信号转导途径共同促进细胞极性

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摘要

Scratch-induced disruption of cultured monolayers induces polarity in front row cells that can be visualized by spatially localized polymerization of actin at the front of the cell and reorientation of the centrosome/Golgi to face the leading edge. We previously reported that centrosomal reorientation and microtubule polarization depend on a Cdc42-regulated signal transduction pathway involving activation of the Par6/aPKC complex followed by inhibition of GSK-3β and accumulation of the adenomatous polyposis coli (APC) protein at the plus ends of leading-edge microtubules. Using monolayers of primary rodent embryo fibroblasts, we show here that dishevelled (Dvl) and axin, two major components of the Wnt signaling pathway are required for centrosome reorientation and that Wnt5a is required for activation of this pathway. We conclude that disruption of cell–cell contacts leads to the activation of a noncanonical Wnt/dishevelled signal transduction pathway that cooperates with Cdc42/Par6/aPKC to promote polarized reorganization of the microtubule cytoskeleton.
机译:刮擦诱导的培养单分子层的破坏在前排细胞中诱导了极性,这可以通过肌动蛋白在细胞前部的空间定位聚合以及中心体/高尔基体重新定向以面对前沿来观察。我们以前曾报道过,中心体的重新定向和微管极化取决于Cdc42调控的信号转导途径,涉及激活Par6 / aPKC复合物,然后抑制GSK-3β和腺瘤性息肉病大肠杆菌(APC)蛋白在前导末端的积累。边缘微管。使用单层啮齿动物原代胚胎成纤维细胞,我们在这里显示了衣衫不整的(Dvl)和毒素,Wnt信号传导途径的两个主要组成部分是中心体重新定向所必需的,而Wnt5a则是激活该途径所必需的。我们得出的结论是,细胞间接触的破坏会导致与Cdc42 / Par6 / aPKC协同作用的非经典Wnt /去杂化信号转导通路的激活,从而促进微管细胞骨架的极化重组。

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