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p85α promotes nucleolin transcription and subsequently enhances EGFR mRNA stability and EGF-induced malignant cellular transformation

机译:p85α促进核仁素转录并随后增强EGFR mRNA稳定性和EGF诱导的恶性细胞转化

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摘要

p85α is a regulatory subunit of phosphatidylinositol 3-kinase (PI3K) that is a key lipid enzyme for generating phosphatidylinositol 3, 4, 5-trisphosphate, and subsequently activates signaling that ultimately regulates cell cycle progression, cell growth, cytoskeletal changes, and cell migration. In addition to form a complex with the p110 catalytic subunit, p85α also exists as a monomeric form due to that there is a greater abundance of p85α than p110 in many cell types. Our previous studies have demonstrated that monomeric p85α exerts a pro-apoptotic role in UV response through induction of TNF-α gene expression in PI3K-independent manner. In current studies, we identified a novel biological function of p85α as a positive regulator of epidermal growth factor receptor (EGFR) expression and cell malignant transformation via nucleolin-dependent mechanism. Our results showed that p85α was crucial for EGFR and nucleolin expression and subsequently resulted in an increase of malignant cellular transformation by using both specific knockdown and deletion of p85α in its normal expressed cells. Mechanistic studies revealed that p85α upregulated EGFR protein expression mainly through stabilizing its mRNA, whereas nucleolin (NCL) was able to bind to egfr mRNA and increase its mRNA stability. Consistently, overexpression of NCL in p85α−/− cells restored EGFR mRNA stabilization, protein expression and cell malignant transformation. Moreover, we discovered that p85α upregulated NCL gene transcription via enhancing C-Jun activation. Collectively, our studies demonstrate a novel function of p85α as a positive regulator of EGFR mRNA stability and cell malignant transformation, providing a significant insight into the understanding of biomedical nature of p85α protein in mammalian cells and further supporting that p85α might be a potential target for cancer prevention and therapy.
机译:p85α是磷脂酰肌醇3激酶(PI3K)的调节亚基,它是产生磷脂酰肌醇3、4、5-三磷酸的关键脂质酶,随后激活信号传导,最终调节细胞周期进程,细胞生长,细胞骨架变化和细胞迁移。 。除了与p110催化亚基形成复合物外,p85α还以单体形式存在,因为在许多细胞类型中,p85α的丰度比p110大。我们以前的研究表明,单体p85α通过以PI3K独立的方式诱导TNF-α基因表达,在紫外线反应中发挥促凋亡作用。在当前的研究中,我们确定了p85α的新型生物学功能,它是通过核仁素依赖性机制对表皮生长因子受体(EGFR)表达和细胞恶性转化的正向调节剂。我们的结果表明,p85α对于EGFR和核仁蛋白表达至关重要,并通过在其正常表达细胞中同时使用特异性敲除和缺失p85α导致恶性细胞转化的增加。机理研究表明,p85α主要通过稳定其mRNA来上调EGFR蛋白的表达,而核仁蛋白(NCL)能够与egfr mRNA结合并增加其mRNA的稳定性。一致地,p85α-/-细胞中NCL的过表达恢复了EGFR mRNA的稳定,蛋白质表达和细胞恶性转化。此外,我们发现p85α通过增强C-Jun激活上调了NCL基因的转录。总的来说,我们的研究证明了p85α作为EGFR mRNA稳定性和细胞恶性转化的正向调节剂的新功能,为深入了解哺乳动物细胞中p85α蛋白的生物医学性质提供了重要见识,并进一步支持p85α可能是潜在的靶点。癌症的预防和治疗。

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