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首页> 外文期刊>Science Advances >Synthetic lethality by targeting the RUVBL1/2-TTT complex in mTORC1-hyperactive cancer cells
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Synthetic lethality by targeting the RUVBL1/2-TTT complex in mTORC1-hyperactive cancer cells

机译:通过靶向MTORC1-多活性癌细胞中的Ruvbl1 / 2-TTT复合物来致死性

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Despite considerable efforts, mTOR inhibitors have produced limited success in the clinic. To define the vulnerabilities of mTORC1-addicted cancer cells and to find previously unknown therapeutic targets, we investigated the mechanism of piperlongumine, a small molecule identified in a chemical library screen to specifically target cancer cells with a hyperactive mTORC1 phenotype. Sensitivity to piperlongumine was dependent on its ability to suppress RUVBL1/2-TTT, a complex involved in chromatin remodeling and DNA repair. Cancer cells with high mTORC1 activity are subjected to higher levels of DNA damage stress via c-Myc and displayed an increased dependency on RUVBL1/2 for survival and counteracting genotoxic stress. Examination of clinical cancer tissues also demonstrated that high mTORC1 activity was accompanied by high RUVBL2 expression. Our findings reveal a previously unknown role for RUVBL1/2 in cell survival, where it acts as a functional chaperone to mitigate stress levels induced in the mTORC1-Myc-DNA damage axis.
机译:尽管努力相当大,但MTOR抑制剂在诊所产生了有限的成功。为了定义MTORC1上瘾的癌细胞的脆弱性并寻找先前未知的治疗靶标,我们研究了哌隆萌,在化学文库筛选中鉴定的小分子的机制,以特异性地靶向癌细胞与过度活跃的MTORC1表型。对Piperlongumine的敏感性取决于其抑制Ruvbl1 / 2-TTT的能力,涉及染色质重塑和DNA修复的复合物。具有高MTORC1活性的癌细胞经受C-MYC的更高水平的DNA损伤胁迫,并呈​​现对Ruvbl1 / 2的依赖性,以存活和抵消遗传毒性应激。检查临床癌组织还证明了高MTORC1活性伴随着高ruvbl2表达。我们的研究结果揭示了ruvbl1 / 2在细胞存活中的先前未知的作用,其中它充当功能伴侣,以减轻MTORC1-MYC-DNA损伤轴中诱导的应力水平。

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