基诺美
第1周
化学
激酶
小分子
细胞周期蛋白依赖激酶1
细胞周期蛋白依赖激酶
磷酸化
细胞生物学
生物化学
结构-活动关系
计算生物学
细胞周期
体外
细胞
生物
作者
J. Zhu,Rebecca A. D. Cuellar,Norbert Berndt,Hee Eun Lee,S.H. Olesen,Mathew P. Martin,Jeffrey T. Jensen,Gunda I. Georg,E. Schönbrunn
标识
DOI:10.1021/acs.jmedchem.7b00996
摘要
Members of the Wee family of kinases negatively regulate the cell cycle via phosphorylation of CDK1 and are considered potential drug targets. Herein, we investigated the structure–function relationship of human Wee1, Wee2, and Myt1 (PKMYT1). Purified recombinant full-length proteins and kinase domain constructs differed substantially in phosphorylation states and catalytic competency, suggesting complex mechanisms of activation. A series of crystal structures reveal unique features that distinguish Wee1 and Wee2 from Myt1 and establish the structural basis of differential inhibition by the widely used Wee1 inhibitor MK-1775. Kinome profiling and cellular studies demonstrate that, in addition to Wee1 and Wee2, MK-1775 is an equally potent inhibitor of the polo-like kinase PLK1. Several previously unrecognized inhibitors of Wee kinases were discovered and characterized. Combined, the data provide a comprehensive view on the catalytic and structural properties of Wee kinases and a framework for the rational design of novel inhibitors thereof.
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