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The N-terminal region of p27 inhibits HIF-1α protein translation in ribosomal protein S6-dependent manner by regulating PHLPP-Ras-ERK-p90RSK axis

机译:p27的N端区域通过调节PHLPP-Ras-ERK-p90RSK轴以核糖体蛋白S6依赖性方式抑制HIF-1 α蛋白翻译

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P27 was identified as a tumor suppressor nearly two decades, being implicated in cell-cycle control, differentiation, senescence, apoptosis and motility. Our present study, for the first time to the best of our knowledge, revealed a potential role of p27 in inhibiting S6-mediated hypoxia-inducible factor-1 α (HIF-1 α ) protein translation, which contributed to the protection from environmental carcinogen (sodium arsenite)-induced cell transformation. Our findings showed that depletion of p27 expression by knockout and knockdown approaches efficiently enhanced S6 phosphorylation in arsenite response via overactivating Ras/Raf/MEK/ERK pathway, which consequently resulted in the stimulation of p90RSK (90?kDa ribosomal S6 kinase), a direct kinase for S6 phosphorylation. Although PI3K/AKT pathway was also involved in S6 activation, blocking AKT and p70S6K activation did not attenuate arsenite-induced S6 activation in p27?/? cells, suggesting p27 specifically targeted Ras/ERK pathway rather than PI3K/AKT pathway for inhibition of S6 activation in response to arsenite exposure. Further functional studies found that p27 had a negative role in cell transformation induced by chronic low-dose arsentie exposure. Mechanistic investigations showed that HIF-1 α translation was upregulated in p27-deficient cells in an S6 phosphorylation-dependent manner and functioned as a driving force in arsenite-induced cell transformation. Knockdown of HIF-1 α efficiently reversed arsenite-induced cell transformation in p27-depleted cells. Taken together, our findings provided strong evidence showing that by targeting Ras/ERK pathway, p27 provided a negative control over HIF-1 α protein synthesis in an S6-dependent manner, and abrogated arsenite-induced cell transformation via downregulation of HIF-1 α translation.
机译:P27被认为是近二十年来的肿瘤抑制因子,与细胞周期控制,分化,衰老,凋亡和运动有关。据我们所知,本研究首次揭示了p27在抑制S6介导的缺氧诱导因子1α(HIF-1α)蛋白翻译中的潜在作用,这有助于保护免受环境致癌物的侵害。 (亚砷酸钠)诱导的细胞转化。我们的研究结果表明,通过敲除和敲除方法耗尽p27表达可通过过度激活Ras / Raf / MEK / ERK途径有效增强亚砷酸盐响应中的S6磷酸化,从而刺激直接刺激p90RSK(90?kDa核糖体S6激酶)。 S6磷酸化的激酶。尽管PI3K / AKT途径也参与了S6的活化,但阻断AKT和p70S6K的活化并不能减弱砷在p27α/β中诱导的S6活化。提示p27可以特异性靶向Ras / ERK途径而不是PI3K / AKT途径来抑制S6活化,以响应砷暴露。进一步的功能研究发现,p27在慢性低剂量急性暴露引起的细胞转化中具有负作用。机理研究表明,在p27缺陷细胞中,HIF-1α翻译以S6磷酸化依赖性方式上调,并在砷诱导的细胞转化中起驱动作用。击倒HIF-1α可有效逆转p27缺失细胞中亚砷酸盐诱导的细胞转化。综上所述,我们的发现提供了有力的证据,表明通过靶向Ras / ERK途径,p27以S6依赖性方式对HIF-1α蛋白质合成提供了负控制,并通过下调HIF-1α消除了砷诱导的细胞转化翻译。

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