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Rb 的缺失与 Ras 协同作用,驱动哺乳动物细胞的致癌生长。

Loss of Rb cooperates with Ras to drive oncogenic growth in mammalian cells.

机构信息

MRC Laboratory for Molecular Cell Biology and the UCL Cancer Institute, University College London, Gower Street, London WC1E 6BT, UK.

出版信息

Curr Biol. 2012 Oct 9;22(19):1765-73. doi: 10.1016/j.cub.2012.07.040. Epub 2012 Aug 9.

Abstract

BACKGROUND

The p53, Rb, and Ras/PI3K pathways are implicated in the development of the majority of human cancers. A number of studies have established that these pathways cooperate at the level of the cell cycle leading to loss of normal proliferative controls. Here we have investigated how these signals influence a second critical component of tumor formation-cell growth.

RESULTS

We find that oncogenic Ras is sufficient to drive growth via the canonical growth pathway, PI3K-AKT-TOR; however, it does so relatively weakly and p53 loss does not drive cell growth at all. Importantly, we identify a novel role for the Rb family of tumor suppressors in directing cell growth via a signaling pathway distinct from PI3K-AKT-TOR and via an E2F-independent mechanism. However, we find that strong, sustained growth requires Rb loss together with Ras signaling, identifying an additional mechanism by which these oncogenic pathways cooperate and a critical role for Ras in preserving the uptake of extracellular nutrients required for biogenesis.

CONCLUSIONS

We have identified a new role for the Rb family in cell biogenesis and show that, as for other processes associated with tumor development, oncogenic cell growth is dependent on cooperating oncogenes.

摘要

背景

p53、Rb 和 Ras/PI3K 通路与大多数人类癌症的发生发展相关。大量研究已经证实,这些通路在细胞周期水平上相互作用,导致正常增殖控制的丧失。在这里,我们研究了这些信号如何影响肿瘤形成的第二个关键组成部分——细胞生长。

结果

我们发现致癌性 Ras 通过经典的生长途径 PI3K-AKT-TOR 足以驱动生长;然而,它的作用相对较弱,p53 缺失根本不会驱动细胞生长。重要的是,我们确定了 Rb 家族肿瘤抑制因子的一个新作用,即通过不同于 PI3K-AKT-TOR 的信号通路,并通过 E2F 非依赖性机制来指导细胞生长。然而,我们发现,强烈、持续的生长需要 Rb 缺失与 Ras 信号一起发生,这确定了这些致癌通路相互合作的另一种机制,以及 Ras 在维持生物发生所需的细胞外营养物质摄取方面的关键作用。

结论

我们已经确定了 Rb 家族在细胞生物发生中的新作用,并表明,与与肿瘤发展相关的其他过程一样,致癌性细胞生长依赖于协同致癌基因。

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