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首页> 外文期刊>Journal of Pathology: Journal of the Pathological Society of Great Britain and Ireland >Cytoplasmic p27(Kip1) promotes tumorigenesis via suppression of RhoB activity
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Cytoplasmic p27(Kip1) promotes tumorigenesis via suppression of RhoB activity

机译:细胞质P27(KIP1)通过抑制RhoB活性促进肿瘤发生

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The cell cycle inhibitor p27(Kip1) is a tumor suppressor via the inhibition of CDK complexes in the nucleus. However, p27 also plays other functions in the cell and may acquire oncogenic roles when located in the cytoplasm. Activation of oncogenic pathways such as Ras or PI3K/AKT causes the relocalization of p27 in the cytoplasm, where it can promote tumorigenesis by unclear mechanisms. Here, we investigated how cytoplasmic p27 participates in the development of non-small cell lung carcinomas. We provide molecular and genetic evidence that the oncogenic role of p27 is mediated, at least in part, by binding to and inhibiting the GTPase RhoB, which normally acts as a tumor suppressor in the lung. Genetically modified mice revealed that RhoB expression is preferentially lost in tumors in which p27 is absent and maintained in tumors expressing wild-type p27 or p27(CK-), a mutant that cannot inhibit CDKs. Moreover, although the absence of RhoB promoted tumorigenesis in p27(-/-) animals, it had no effect in p27(CK-) knock-in mice, suggesting that cytoplasmic p27 may act as an oncogene, at least in part, by inhibiting the activity of RhoB. Finally, in a cohort of lung cancer patients, we identified a subset of tumors harboring cytoplasmic p27 in which RhoB expression is maintained and these characteristics were strongly associated with decreased patient survival. Thus, monitoring p27 localization and RhoB levels in non-small cell lung carcinoma patients appears to be a powerful prognostic marker for these tumors. Copyright (c) 2018 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.
机译:细胞周期抑制剂P27(KIP1)是通过抑制细胞核中的CDK络合物的肿瘤抑制剂。然而,P27还在细胞中发挥其他功能,并且可以在位于细胞质中获取致癌作用。致癌途径的激活,如Ras或Pi3k / akt导致细胞质中p27的重定位化,在那里它可以通过不明确的机制促进肿瘤发生。在这里,我们研究了细胞质P27如何参与非小细胞肺癌的发展。我们提供分子和遗传证据,即P27的致癌作用至少部分地通过结合并抑制GTPAse rhob,其通常用作肺中的肿瘤抑制剂。遗传修饰的小鼠揭示了RhoB表达优先在肿瘤中丧失,其中P27不存在并保持在表达野生型P27或P27(CK-)的肿瘤中,突变体不能抑制CDK。此外,尽管在P27( - / - )动物中没有rhOB促进肿瘤发生,但它在P27(CK-)敲击小鼠中没有作用,表明细胞质P27可至少部分地通过抑制作用rhob的活动。最后,在肺癌患者的队列中,我们鉴定了含细胞质P27的肿瘤的肿瘤,其中维持了rhoB表达,并且这些特性与患者存活率的降低强烈相关。因此,监测非小细胞肺癌患者的P27定位和rhOB水平似乎是这些肿瘤的强大预后标志物。英国和爱尔兰的版权所有(c)2018年病理学协会。由John Wiley&Sons,Ltd.出版

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