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A functional genetic screen identifies the Mediator complex as essential for SSX2-induced senescence

机译:功能性遗传筛网鉴定了介质复合体,对SSX2诱导的衰老至关重要

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The senescence response to oncogenes is believed to be a barrier to oncogenic transformation in premalignant lesions, and describing the mechanisms by which tumor cells evade this response is important for early diagnosis and treatment. The male germ cell-associated protein SSX2 is ectopically expressed in many types of cancer and is functionally involved in regulating chromatin structure and supporting cell proliferation. Similar to many well-characterized oncogenes, SSX2 has the ability to induce senescence in cells. In this study, we performed a functional genetic screen to identify proteins implicated in SSX2-induced senescence and identified several subunits of the Mediator complex, which is central in regulating RNA polymerase-mediated transcription. Further experiments showed that reduced levels of MED1, MED4, and MED14 perturbed the development of senescence in SSX2-expressing cells. In contrast, knockdown of MED1 did not prevent development of B-Raf- and Epirubicin-induced senescence, suggesting that Mediator may be specifically linked to the cellular functions of SSX2 that may lead to development of senescence or be central in a SSX2-specific senescence response. Indeed, immunostaining of melanoma tumors, which often express SSX proteins, exhibited altered levels of MED1 compared to benign nevi. Similarly, RNA-seq analysis suggested that MED1, MED4, and MED14 were downregulated in some tumors, while upregulated in others. In conclusion, our study reveals the Mediator complex as essential for SSX2-induced senescence and suggests that changes in Mediator activity could be instrumental for tumorigenesis.
机译:据信对诱发癌生成的衰老反应是致癌损伤中致癌转化的屏障,并描述肿瘤细胞逃避这种反应的机制对于早期诊断和治疗是重要的。雄性生殖细胞相关蛋白SSX2在许多类型的癌症中被不同地表达,并且在功能上涉及调节染色质结构和支持细胞增殖。类似于许多良好特征的血管生成,SSX2具有诱导细胞中衰老的能力。在这项研究中,我们进行了功能遗传筛查,以鉴定涉及SSX2诱导的衰老的蛋白质,并确定了介质复合物的几个亚基,这是调节RNA聚合酶介导的转录中的中心。进一步的实验表明,DED1,MED4和MED14的水平降低了扰动了SSX2表达细胞中衰老的发展。相比之下,Med1的敲低并未阻止B-RAF和EPIRUBICIN诱导的衰老的发育,表明介体可以与SSX2的细胞功能特别连接,这可能导致衰老或在SSX2特异性衰老中产生中枢回复。实际上,与良性痣相比,通常表达SSX蛋白的黑色素瘤肿瘤的免疫染色,其表现出改变的Med1水平。类似地,RNA-SEQ分析表明MED1,MED4和MED14在一些肿瘤中下调,同时在其他肿瘤上上调。总之,我们的研究表明,介质复合体对SSX2诱导的衰老至关重要,并表明介质活动的变化可能是肿瘤发生的辅助性。

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