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首页> 外文期刊>The Journal of biological chemistry >Mutant p53 Disrupts Role of ShcA Protein in Balancing Smad Protein-dependent and -independent Signaling Activity of Transforming Growth Factor-β (TGF-β)
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Mutant p53 Disrupts Role of ShcA Protein in Balancing Smad Protein-dependent and -independent Signaling Activity of Transforming Growth Factor-β (TGF-β)

机译:突变体P53破坏了ShCA蛋白在平衡Shca蛋白的作用依赖性蛋白质依赖性和依赖性信号传导活性转化生长因子-β(TGF-β)

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Biomarkers are lacking for identifying the switch of transforming growth factor-β (TGF-β) from tumor-suppressing to tumor-promoting. Mutated p53 (mp53) has been suggested to switch TGF-β to a tumor promoter. However, we found that mp53 does not always promote the oncogenic role of TGF-β. Here, we show that endogenous mp53 knockdown enhanced cell migration and phosphorylation of ERK in DU145 prostate cancer cells. Furthermore, ectopic expression of mp53 in p53-null PC-3 prostate cancer cells enhanced Smad-dependent signaling but inhibited TGF-β-induced cell migration by down-regulating activated ERK. Reactivation of ERK by the expression of its activator, MEK-1, restored TGF-β-induced cell migration. Because TGF-β is known to activate the MAPK/ERK pathway through direct phosphorylation of the adaptor protein ShcA and MAPK/ERK signaling is pivotal to tumor progression, we investigated whether ShcA contributed to mp53-induced ERK inhibition and the conversion of the role of TGF-β during carcinogenesis. We found that mp53 expression led to a decrease of phosphorylated p52ShcA/ERK levels and an increase of phosphorylated Smad levels in a panel of mp53-expressing cancer cell lines and in mammary glands and tumors from mp53 knock-in mice. By manipulating ShcA levels to regulate ERK and Smad signaling in human untransformed and cancer cell lines, we showed that the role of TGF-β in regulating anchorage-dependent and -independent growth and migration can be shifted between growth suppression and migration promotion. Thus, our results for the first time suggest that mp53 disrupts the role of ShcA in balancing the Smad-dependent and -independent signaling activity of TGF-β and that ShcA/ERK signaling is a major pathway regulating the tumor-promoting activity of TGF-β.
机译:生物标志物是缺乏用于鉴定来自肿瘤抑制对肿瘤促进转化生长因子β(TGF-β)的开关。突变的p53(MP53)已经建议TGF-β切换到肿瘤启动子。然而,我们发现,MP53并不总是促进TGF-β的致癌作用。在这里,我们表明,内源性MP53击倒在DU145前列腺癌细胞增强细胞迁移和ERK的磷酸化。此外,在p53无效PC-3前列腺癌细胞MP53的异位表达增强的Smad依赖性信号而是通过下调激活ERK抑制TGF-β诱导的细胞迁移。由它的活化剂,MEK-1的表达ERK的再活化,恢复TGF-β诱导的细胞迁移。因为TGF-β是已知的通过适配器蛋白SHCA和MAPK的直接磷酸化来激活MAPK / ERK途径/ ERK信号传导的关键肿瘤进展中,我们调查SHCA是否促成MP53诱导的ERK抑制和作用的转化癌变过程中TGF-β。我们发现导致磷酸化p52ShcA / ERK水平的降低和的MP53表达癌细胞系中的增加的Smad磷酸化水平的和在乳腺肿瘤和从该MP53表达MP53敲入小鼠。通过操纵SHCA水平来调节ERK和Smad在人未转化和癌细胞系的信令,我们发现,TGF-β在调节贴壁依赖性和非依赖性生长和迁移的作用,可以抑制生长和迁移促进之间移动。因此,我们首次研究结果表明,MP53破坏SHCA的平衡TGF-βSHCA / ERK信号的,而且Smad蛋白依赖性和非依赖性信号活性的作用是主要的通路调控TGF-β的肿瘤促进活动β。

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