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靶向 RUVBL1/2-TTT 复合物对 mTORC1 活性过强的癌细胞的合成致死性。

Synthetic lethality by targeting the RUVBL1/2-TTT complex in mTORC1-hyperactive cancer cells.

机构信息

The Hormel Institute, University of Minnesota, Austin, MN 55912, USA.

Department of Food and Nutrition, Gyeongsang National University, Jinju 52828, Republic of Korea.

出版信息

Sci Adv. 2020 Jul 31;6(31):eaay9131. doi: 10.1126/sciadv.aay9131. eCollection 2020 Jul.

Abstract

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.

摘要

尽管付出了相当大的努力,但 mTOR 抑制剂在临床上的效果有限。为了确定对 mTORC1 成瘾的癌细胞的脆弱性,并找到以前未知的治疗靶点,我们研究了胡椒碱的作用机制。胡椒碱是从化学文库筛选中鉴定出的一种小分子,专门针对具有过度活跃的 mTORC1 表型的癌细胞。对胡椒碱的敏感性取决于其抑制 RUVBL1/2-TTT 的能力,RUVBL1/2-TTT 是一种参与染色质重塑和 DNA 修复的复合物。通过 c-Myc,高 mTORC1 活性的癌细胞会受到更高水平的 DNA 损伤应激,并对 RUVBL1/2 产生更高的生存和对抗遗传毒性应激的依赖性。对临床癌症组织的检查也表明,高 mTORC1 活性伴随着 RUVBL2 表达的增加。我们的发现揭示了 RUVBL1/2 在细胞存活中的一个以前未知的作用,它作为一种功能伴侣,减轻了 mTORC1-Myc-DNA 损伤轴诱导的应激水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/864e/7399646/8590810c6b64/aay9131-F1.jpg

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