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首页> 外文期刊>Cell adhesion & migration >A remarkable new target gene for the dioxin receptor: The Vav3 proto-oncogene links AhR to adhesion and migration.
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A remarkable new target gene for the dioxin receptor: The Vav3 proto-oncogene links AhR to adhesion and migration.

机译:二恶英受体的一个杰出的新靶基因:Vav3原癌基因将AhR与粘附和迁移联系起来。

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摘要

The dioxin receptor (AhR) is possibly the best characterized xenobiotic receptor because of its essential role in mediating the harmful effects of highly toxic environmental pollutants. Despite the fact that AhR-dependent toxicity is a major environmental concern, compelling evidence has recently been produced unveiling novel and remarkable endogenous functions of AhR in cell physiology and tissue homeostasis. Adding to its role in cell proliferation and differentiation, AhR is also involved in the control of cell adhesion and migration, both highly relevant tasks in development and in disease states such as cancer. Interestingly, the effect of AhR on cell migration is cell-type specific because it can sustain or slow down cell motility. Here, I will comment on our recent report showing that AhR is a positive regulator of fibroblast cells migration. Besides characterizing the phenotype of such mesenchymal cells, the most important single finding of our study is that AhR uses the cytoskeleton regulator and oncogen Vav3 to signal through small Rho GTPases, ultimately leading to the physiological control of cell adhesion and migration. These data reveal that AhR activity is required to maintain signaling pathways governing normal cell function and open the question of whether AhR plays a role in cell migration during development and in pathological conditions such as tumor metastasis.
机译:二恶英受体(AhR)可能是表征最深的异种生物受体,因为它在介导高毒性环境污染物的有害作用中起着至关重要的作用。尽管事实上依赖于AhR的毒性是一个主要的环境问题,最近仍产生了令人信服的证据,揭示了AhR在细胞生理和组织稳态中的新颖而显着的内源性功能。除了在细胞增殖和分化中的作用外,AhR还参与细胞黏附和迁移的控制,这与发育和疾病状态(例如癌症)都高度相关。有趣的是,AhR对细胞迁移的影响是特定于细胞类型的,因为它可以维持或减慢细胞运动。在这里,我将评论我们最近的报告,该报告显示AhR是成纤维细胞迁移的正向调节剂。除了表征这些间充质细胞的表型外,我们研究的最重要的单一发现是AhR使用细胞骨架调节剂和癌基因Vav3通过小的Rho GTPases发出信号,最终导致了对细胞黏附和迁移的生理控制。这些数据表明,AhR活性是维持控制正常细胞功能的信号通路所必需的,并提出了一个问题,即在发育过程中以及在诸如肿瘤转移的病理条件下,AhR是否在细胞迁移中起作用。

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