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首页> 外文期刊>Oncogene >E2F1-dependent oncogenic addiction of melanoma cells to MDM2
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E2F1-dependent oncogenic addiction of melanoma cells to MDM2

机译:黑色素瘤细胞对MDM2的E2F1依赖性致癌成瘾

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摘要

One of the defining features of aggressive melanomas is their complexity. Hundreds of mutations and an ever increasing list of changes in the transcriptome and proteome distinguish normal from malignant melanocytic cells. Yet, despite this altered genetic background, a long-known attribute of melanomas is a relatively low rate of mutations in the p53 gene. However, it is unclear whether p53 is maintained in melanoma cells because it is required for their survival, or because it is functionally disabled. More pressing from a translational perspective, is to define whether there is a tumor cell-selective wiring of p53 that offers a window for therapeutic intervention. Here, we provide genetic and pharmacological evidence demonstrating that p53 represents a liability to melanoma cells, which they thwart by assuming an oncogenic dependency on the E3 ligase murine double minute-2 (MDM2). Specifically, we used a combination of RNA interference and two structurally independent small molecule inhibitors of the p53鈥揗DM2 interaction to assess the relative requirement of both proteins for the viability of normal melanocytes and a broad panel of melanoma cell lines. We demonstrated in vitro and in vivo that MDM2 is selectively required to blunt latent pro-senescence signals in melanoma cells. Notably, the outcome of MDM2 inactivation depends not only on the mutational status of p53, but also on its ability to signal to the transcription factor E2F1. These data support MDM2 as a drug target in melanoma cells, and identify E2F1 as a biomarker to consider when stratifying putative candidates for clinical studies of p53鈥揗DM2 inhibitors.
机译:侵袭性黑色素瘤的定义特征之一是其复杂性。数百种突变以及转录组和蛋白质组中不断变化的变化列表将正常细胞与恶性黑素细胞区分开来。然而,尽管遗传背景发生了变化,黑素瘤的一个长期已知属性是p53基因突变的发生率相对较低。但是,尚不清楚p53是否在黑色素瘤细胞中得以维持,是因为其是生存所必需的,还是因为其功能被禁用。从翻译的角度来看,更为紧迫的是定义是否存在p53的肿瘤细胞选择性连接,从而为治疗干预提供一个窗口。在这里,我们提供了遗传和药理学证据,证明p53代表黑素瘤细胞的一种责任,它们假设对E3连接酶鼠类doubleminute-2(MDM2)有致癌性,从而阻止了这种作用。具体而言,我们结合使用RNA干扰和两种结构独立的p53'揗DM2相互作用的小分子抑制剂来评估两种蛋白质对正常黑素细胞和广泛的黑素瘤细胞系生存力的相对要求。我们在体外和体内证明了选择性地需要MDM2来钝化黑色素瘤细胞中潜在的衰老前信号。值得注意的是,MDM2失活的结果不仅取决于p53的突变状态,还取决于其向转录因子E2F1发出信号的能力。这些数据支持将MDM2作为黑色素瘤细胞中的药物靶标,并确定E2F1是对p53-DM2抑制剂临床研究的假定候选物进行分层时要考虑的生物标志物。

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