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The Dioxin Receptor Regulates the Constitutive Expression of the Vav3 Proto-Oncogene and Modulates Cell Shape and Adhesion

机译:二恶英受体调节Vav3原癌基因的组成型表达并调节细胞形状和粘附。

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摘要

The dioxin receptor (AhR) modulates cell plasticity and migration, although the signaling involved remains unknown. Here, we report a mechanism that integrates AhR into these cytoskeleton-related functions. Immortalized and mouse embryonic fibroblasts lacking AhR (AhR−/−) had increased cell area due to spread cytoplasms that reverted to wild-type morphology upon AhR re-expression. The AhR-null phenotype included increased F-actin stress fibers, depolarized focal adhesions, and enhanced spreading and adhesion. The cytoskeleton alterations of AhR−/− cells were due to down-regulation of constitutive Vav3 expression, a guanosine diphosphate/guanosine triphosphate exchange factor for Rho/Rac GTPases and a novel transcriptional target of AhR. AhR was recruited to the vav3 promoter and maintained constitutive mRNA expression in a ligand-independent manner. Consistently, AhR−/− fibroblasts had reduced Rac1 activity and increased activation of the RhoA/Rho kinase (Rock) pathway. Pharmacological inhibition of Rac1 shifted AhR+/+ fibroblasts to the null phenotype, whereas Rock inhibition changed AhR-null cells to the AhR+/+ morphology. Knockdown of vav3 transcripts by small interfering RNA induced cytoskeleton defects and changes in adhesion and spreading mimicking those of AhR-null cells. Moreover, vav3−/− MEFs, as AhR−/− mouse embryonic fibroblasts, had increased cell area and enhanced stress fibers. By modulating Vav3-dependent signaling, AhR could regulate cell shape, adhesion, and migration under physiological conditions and, perhaps, in certain pathological states.
机译:二恶英受体(AhR)调节细胞可塑性和迁移,尽管涉及的信号仍然未知。在这里,我们报告了一种机制,将AhR整合到这些与细胞骨架相关的功能中。缺乏AhR(AhR-/-)的永生化和小鼠胚胎成纤维细胞由于细胞质扩散而增加了细胞面积,这些细胞质在AhR重新表达后恢复为野生型形态。 AhR-null表型包括增加的F-肌动蛋白应激纤维,去极化的粘着斑以及增强的铺展性和粘附性。 AhR-/-细胞的细胞骨架改变是由于组成性Vav3表达的下调,Rho / Rac GTPases的鸟苷二磷酸/鸟苷三磷酸交换因子和AhR的新转录靶点引起的。 AhR被募集到vav3启动子并以配体非依赖性方式维持组成型mRNA表达。一致地,AhR-/-成纤维细胞具有降低的Rac1活性并增加了RhoA / Rho激酶(Rock)途径的激活。 Rac1的药理抑制作用将AhR + / +成纤维细胞转变为无效表型,而Rock抑制作用将AhR-null细胞转变为AhR + / +形态。通过小的干扰RNA诱导的vav3转录物的敲低可以模仿AhA-null细胞的细胞骨架缺陷以及粘附和扩散的变化。此外,作为AhR-/-小鼠胚胎成纤维细胞的vav3-/-MEF具有增加的细胞面积和增强的应激纤维。通过调节Vav3依赖性信号传导,AhR可以在生理条件下以及可能在某些病理状态下调节细胞形状,粘附和迁移。

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