激酶
效力
合成致死
化学
聚合酶
药物发现
机制(生物学)
计算生物学
鉴定(生物学)
药理学
基因
生物化学
下调和上调
DNA
RNA聚合酶Ⅱ
细胞生物学
药效学
DNA聚合酶
转移酶
蛋白激酶A
药代动力学
结构-活动关系
铅化合物
共价键
酶
生物
药物开发
DNA修复
核糖核酸
癌症研究
作用机理
高通量筛选
基因表达
表型筛选
作者
Robert A. Swyka,Evan D. Styduhar,Anlai Wang,Xin Li,Ke Zhang,Michael R. Witten,Peng Zhao,Michael Z. Liang,Onur Atasoylu,Peng He,Ryan S. Soderquist,M. Hansbury,Lu Huo,Haiying Chen,Derek Zimmer,Wenliang Zhang,Kathy He Wang,Alla Volgina,L.B. Epling,Erin L. Crowgey
标识
DOI:10.1021/acsmedchemlett.5c00743
摘要
Downregulation of DNA damage repair genes has attracted considerable research attention recently due to the success of poly-(ADP-ribose) polymerase inhibitors. Identification of additional targets and therapies that exploit synthetic lethality could greatly benefit cancer patients. Cyclin-dependent kinases 12 and 13 (CDK12 and CDK13), which regulate RNA polymerase II (RNA Pol II) and, therefore, gene transcription, represented promising therapeutic targets. Although several inhibitors for these kinases have been disclosed, few have progressed to the clinic. Most existing inhibitors utilize a covalent warhead to obtain potency and selectivity. In this study, we reported the design and development of a series of highly selective noncovalent inhibitors targeting CDK12 and 13. This campaign led to the identification of a lead compound exhibiting outstanding potency and favorable absorption, distribution, metabolism, and excretion profiles, as well as favorable pharmacokinetic properties, thereby demonstrating significant potential for therapeutic applications.
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