化学
吲唑
吡唑
甲酰胺
细胞周期蛋白依赖激酶2
配体效率
立体化学
配体(生物化学)
计算生物学
共晶
小分子
分子
激酶
组合化学
蛋白激酶A
生物化学
受体
生物
氢键
有机化学
作者
Paul G. Wyatt,Andrew Woodhead,Valério Berdini,John A. Boulstridge,Maria G. Carr,David M. Cross,Deborah Davis,Lindsay A. Devine,Theresa R. Early,Ruth E. Feltell,Edward J. Lewis,Rachel McMenamin,Eva F. Navarro,Michael A. O’Brien,Marc O’Reilly,Matthias Reule,Gordon Saxty,Lisa C. A. Seavers,Donna-Michelle Smith,M. Squires
摘要
The application of fragment-based screening techniques to cyclin dependent kinase 2 (CDK2) identified multiple (>30) efficient, synthetically tractable small molecule hits for further optimization. Structure-based design approaches led to the identification of multiple lead series, which retained the key interactions of the initial binding fragments and additionally explored other areas of the ATP binding site. The majority of this paper details the structure-guided optimization of indazole (6) using information gained from multiple ligand−CDK2 cocrystal structures. Identification of key binding features for this class of compounds resulted in a series of molecules with low nM affinity for CDK2. Optimisation of cellular activity and characterization of pharmacokinetic properties led to the identification of 33 (AT7519), which is currently being evaluated in clinical trials for the treatment of human cancers.
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