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PMID: 27279227 已发表 · epublish 英语

Overcoming mTOR resistance mutations with a new-generation mTOR inhibitor.

Nature ·第 534 卷 ·第 7606 期 ·2016-07-06

Rodrik-Outmezguine Vanessa S, Okaniwa Masanori, Yao Zhan, Novotny Chris J, McWhirter Claire, Banaji Arpitha, Won Helen, Wong Wai, Berger Mike, de Stanchina Elisa, Barratt Derek G, Cosulich Sabina, Klinowska Teresa, Rosen Neal, Shokat Kevan M

摘要

Precision medicines exert selective pressure on tumour cells that leads to the preferential growth of resistant subpopulations, necessitating the development of next-generation therapies to treat the evolving cancer. The PIK3CA-AKT-mTOR pathway is one of the most commonly activated pathways in human cancers, which has led to the development of small-molecule inhibitors that target various nodes in the pathway. Among these agents, first-generation mTOR inhibitors (rapalogs) have caused responses in 'N-of-1' cases, and second-generation mTOR kinase inhibitors (TORKi) are currently in clinical trials. Here we sought to delineate the likely resistance mechanisms to existing mTOR inhibitors in human cell lines, as a guide for next-generation therapies. The mechanism of resistance to the TORKi was unusual in that intrinsic kinase activity of mTOR was increased, rather than a direct active-site mutation interfering with drug binding. Indeed, identical drug-resistant mutations have been also identified in drug-naive patients, suggesting that tumours with activating MTOR mutations will be intrinsically resistant to second-generation mTOR inhibitors. We report the development of a new class of mTOR inhibitors that overcomes resistance to existing first- and second-generation inhibitors. The third-generation mTOR inhibitor exploits the unique juxtaposition of two drug-binding pockets to create a bivalent interaction that allows inhibition of these resistant mutants.

文献信息
期刊
Nature
期刊简称
Nature
发表日期
2016-07-06
收录日期
2016-06-09
更新日期
2016-12-06
语言
英语
国家/地区
England
NLM ID
0410462
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