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新型强效细胞活性抑制剂类使MTH1作为广谱癌症靶点无效。

Novel Class of Potent and Cellularly Active Inhibitors Devalidates MTH1 as Broad-Spectrum Cancer Target.

作者信息

Ellermann Manuel, Eheim Ashley, Rahm Fredrik, Viklund Jenny, Guenther Judith, Andersson Martin, Ericsson Ulrika, Forsblom Rickard, Ginman Tobias, Lindström Johan, Silvander Camilla, Trésaugues Lionel, Giese Anja, Bunse Stefanie, Neuhaus Roland, Weiske Jörg, Quanz Maria, Glasauer Andrea, Nowak-Reppel Katrin, Bader Benjamin, Irlbacher Horst, Meyer Hanna, Queisser Nina, Bauser Marcus, Haegebarth Andrea, Gorjánácz Mátyás

机构信息

Bayer AG , Berlin, Germany.

Sprint Bioscience , Huddinge, Sweden.

出版信息

ACS Chem Biol. 2017 Aug 18;12(8):1986-1992. doi: 10.1021/acschembio.7b00370. Epub 2017 Jul 12.

Abstract

MTH1 is a hydrolase responsible for sanitization of oxidized purine nucleoside triphosphates to prevent their incorporation into replicating DNA. Early tool compounds published in the literature inhibited the enzymatic activity of MTH1 and subsequently induced cancer cell death; however recent studies have questioned the reported link between these two events. Therefore, it is important to validate MTH1 as a cancer dependency with high quality chemical probes. Here, we present BAY-707, a substrate-competitive, highly potent and selective inhibitor of MTH1, chemically distinct compared to those previously published. Despite superior cellular target engagement and pharmacokinetic properties, inhibition of MTH1 with BAY-707 resulted in a clear lack of in vitro or in vivo anticancer efficacy either in mono- or in combination therapies. Therefore, we conclude that MTH1 is dispensable for cancer cell survival.

摘要

MTH1是一种水解酶,负责将氧化的嘌呤核苷三磷酸进行净化,以防止它们掺入复制的DNA中。文献中早期报道的工具化合物可抑制MTH1的酶活性,随后诱导癌细胞死亡;然而,最近的研究对这两个事件之间的报道联系提出了质疑。因此,使用高质量的化学探针验证MTH1作为癌症依赖因素很重要。在此,我们展示了BAY-707,一种底物竞争性、高效且选择性的MTH1抑制剂,与先前发表的化合物在化学结构上不同。尽管具有卓越的细胞靶点结合能力和药代动力学特性,但无论是单药治疗还是联合治疗,用BAY-707抑制MTH1均未显示出明显的体外或体内抗癌疗效。因此,我们得出结论,MTH1对癌细胞存活并非必需。

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