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Loss of a negative feedback loop involving Pea3 and Cyclin D2 is required for Pea3-induced migration in transformed mammary epithelial cells

机译:Pea3诱导的转化的乳腺上皮细胞迁移需要丢失涉及Pea3和Cyclin D2的负反馈回路

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摘要

The Ets family transcription factor Pea3 (ETV4) is involved in tumorigenesis especially during the metastatic process. Pea3 is known to induce migration and invasion in mammary epithelial cell model systems. However, the molecular pathways regulated by Pea3 are still misunderstood. In the current study, using in vivo and in vitro assays, Pea3 increased the morphogenetic and tumorigenic capacity of mammary epithelial cells by modulating their cell morphology, proliferation, and migration potential. In addition, Pea3 overexpression favored an epithelialmesenchymal transition (EMT) triggered by TGF-β1. During investigation for molecular events downstream of Pea3, Cyclin D2 (CCND2) was identified as a new Pea3 target gene involved in the control of cellular proliferation and migration, a finding that highlights a new negative regulatory loop between Pea3 and Cyclin D2. Furthermore, Cyclin D2 expression was lost during TGF-β 1-induced EMT and Pea3-induced tumorigenesis. Finally, restored Cyclin D2 expression in Pea3-dependent mammary tumorigenic cells decreased cell migration in an opposite manner to Pea3. As such, these data demonstrate that loss of the negative feedback loop between Cyclin D2 and Pea3 contributes to Pea3-induced tumorigenesis. Implications: This study reveals molecular insight into how the Ets family transcription factor Pea3 favors EMT and contributes to tumorigenesis via a negative regulatory loop with Cyclin D2, a new Pea3 target gene.
机译:Ets家族转录因子Pea3(ETV4)参与肿瘤的发生,特别是在转移过程中。已知Pea3在乳腺上皮细胞模型系统中诱导迁移和侵袭。但是,由Pea3调控的分子途径仍被误解。在当前的研究中,使用体内和体外试验,Pea3通过调节乳腺上皮细胞的细胞形态,增殖和迁移潜能来提高其形态发生和致瘤能力。此外,Pea3过表达促进了由TGF-β1触发的上皮间质转化(EMT)。在研究Pea3下游的分子事件期间,细胞周期蛋白D2(CCND2)被确定为新的Pea3靶基因,参与控制细胞增殖和迁移,这一发现突显了Pea3和Cyclin D2之间的新负调控环。此外,在TGF-β1诱导的EMT和Pea3诱导的肿瘤发生过程中,细胞周期蛋白D2表达丢失。最后,在依赖Pea3的乳腺致瘤细胞中恢复的Cyclin D2表达降低了与Pea3相反的细胞迁移。这样,这些数据表明,Cyclin D2和Pea3之间负反馈回路的丢失有助于Pea3诱导的肿瘤发生。启示:这项研究揭示了分子生物学的见解,即Ets家族转录因子Pea3如何通过新的Pea3靶基因Cyclin D2的负调控环,促进EMT并促进肿瘤发生。

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