首页> 美国卫生研究院文献>Cell Adhesion Migration >Snail promotes cell migration through PI3K/AKT-dependent Rac1 activation as well as PI3K/AKT-independent pathways during prostate cancer progression
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Snail promotes cell migration through PI3K/AKT-dependent Rac1 activation as well as PI3K/AKT-independent pathways during prostate cancer progression

机译:蜗牛在前列腺癌进展过程中通过PI3K / AKT依赖性Rac1激活以及PI3K / AKT依赖性途径促进细胞迁移

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摘要

Snail, a zinc-finger transcription factor, induces epithelial-mesenchymal transition (EMT), which is associated with increased cell migration and metastasis in cancer cells. Rac1 is a small G-protein which upon activation results in formation of lamellipodia, the first protrusions formed by migrating cells. We have previously shown that Snail promotes cell migration through down-regulation of maspin tumor suppressor. We hypothesized that Snail's regulation of cell migration may also involve Rac1 signaling regulated by PI3K/AKT and/or MAPK pathways. We found that Snail overexpression in LNCaP and 22Rv1 prostate cancer cells increased Rac1 activity associated with increased cell migration, and the Rac1 inhibitor, NSC23766, could inhibit Snail-mediated cell migration. Conversely, Snail downregulation using shRNA in the aggressive C4–2 prostate cancer cells decreased Rac1 activity and cell migration. Moreover, Snail overexpression increased ERK and PI3K/AKT activity in 22Rv1 prostate cancer cells. Treatment of Snail-overexpressing 22Rv1 cells with , PI3K/AKT inhibitor or U0126, MEK inhibitor, decreased cell migration significantly, but only significantly reduced Rac1 activity, suggesting that Snail promotes Rac1 activation via the PI3K/AKT pathway. Furthermore, 22Rv1 cells overexpressing Snail displayed decreased maspin levels, while inhibition of maspin expression in 22Rv1 cells with siRNA, led to increased PI3K/AKT, Rac1 activity and cell migration, without affecting ERK activity, suggesting that maspin is upstream of PI3K/AKT. Overall, we have dissected signaling pathways by which Snail may promote cell migration through MAPK signaling or alternatively through PI3K/AKT-Rac1 signaling that involves Snail inhibition of maspin tumor suppressor. This may contribute to prostate cancer progression.
机译:蜗牛是锌指转录因子,可诱导上皮-间质转化(EMT),这与癌细胞中细胞迁移和转移的增加有关。 Rac1是一种小的G蛋白,在激活后会导致片状脂膜形成,这是由细胞迁移形成的第一个突起。我们以前已经表明Snail通过下调maspin肿瘤抑制因子来促进细胞迁移。我们假设Snail对细胞迁移的调控也可能涉及PI3K / AKT和/或MAPK途径调控的Rac1信号传导。我们发现Snail在LNCaP和22Rv1前列腺癌细胞中的过表达增加了Rac1的活性与细胞迁移的增加有关,而Rac1抑制剂NSC23766可以抑制Snail介导的细胞迁移。相反,在侵略性C4–2前列腺癌细胞中使用shRNA抑制蜗牛的表达会降低Rac1活性和细胞迁移。此外,Snail的过表达增加了22Rv1前列腺癌细胞中的ERK和PI3K / AKT活性。用PI3K / AKT抑制剂或U0126 MEK抑制剂处理过表达Snail的22Rv1细胞可显着降低细胞迁移,但仅显着降低Rac1活性,这表明Snail通过PI3K / AKT途径促进Rac1活化。此外,过表达Snail的22Rv1细胞显示出降低的maspin水平,而使用siRNA抑制22Rv1细胞中的maspin表达,则导致PI3K / AKT,Rac1活性和细胞迁移增加,而不会影响ERK活性,这表明maspin位于PI3K / AKT的上游。总体而言,我们已经剖析了Snail可能通过MAPK信号传导或通过涉及Snail抑制maspin肿瘤抑制因子的PI3K / AKT-Rac1信号传导来促进细胞迁移的信号传导途径。这可能有助于前列腺癌的进展。

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