化学
基诺美
激酶
结构-活动关系
小分子
铅化合物
磷脂酰肌醇
生物化学
药物发现
HEK 293细胞
部分
化学图书馆
立体化学
受体
体外
作者
Theresa Manz,Sindhu Carmen Sivakumaren,Fleur M. Ferguson,Tinghu Zhang,Adam Yasgar,Hyuk‐Soo Seo,Scott B. Ficarro,Joseph D. Card,Hyeseok Shim,Chandrasekhar V. Miduturu,Anton Simeonov,Min Shen,Jarrod A. Marto,Sirano Dhe‐Paganon,Matthew D. Hall,Lewis C. Cantley,Nathanael S. Gray
标识
DOI:10.1021/acs.jmedchem.0c00227
摘要
Due to their role in many important signaling pathways, phosphatidylinositol 5-phosphate 4-kinases (PI5P4Ks) are attractive targets for the development of experimental therapeutics for cancer, metabolic, and immunological disorders. Recent efforts to develop small molecule inhibitors for these lipid kinases resulted in compounds with low- to sub-micromolar potencies. Here, we report the identification of CVM-05-002 using a high-throughput screen of PI5P4Kα against our in-house kinase inhibitor library. CVM-05-002 is a potent and selective inhibitor of PI5P4Ks, and a 1.7 Å X-ray structure reveals its binding interactions in the ATP-binding pocket. Further investigation of the structure–activity relationship led to the development of compound 13, replacing the rhodanine-like moiety present in CVM-05-002 with an indole, a potent pan-PI5P4K inhibitor with excellent kinome-wide selectivity. Finally, we employed isothermal cellular thermal shift assays (CETSAs) to demonstrate the effective cellular target engagement of PI5P4Kα and -β by the inhibitors in HEK 293T cells.
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