Design and Synthesis of Pyridone-Containing 3,4-Dihydroisoquinoline-1(2H)-ones as a Novel Class of Enhancer of Zeste Homolog 2 (EZH2) Inhibitors

含吡啶酮的 3,4-二氢异喹啉-1(2H)-酮作为 Zeste 同源物 2 (EZH2) 抑制剂的新型增强剂的设计和合成

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作者:Pei-Pei Kung, Eugene Rui, Simon Bergqvist, Patrick Bingham, John Braganza, Michael Collins, Mei Cui, Wade Diehl, Dac Dinh, Connie Fan, Valeria R Fantin, Hovhannes J Gukasyan, Wenyue Hu, Buwen Huang, Susan Kephart, Cody Krivacic, Robert A Kumpf, Gary Li, Karen A Maegley, Indrawan McAlpine, Lisa Nguye

Abstract

A new enhancer of zeste homolog 2 (EZH2) inhibitor series comprising a substituted phenyl ring joined to a dimethylpyridone moiety via an amide linkage has been designed. A preferential amide torsion that improved the binding properties of the compounds was identified for this series via computational analysis. Cyclization of the amide linker resulted in a six-membered lactam analogue, compound 18. This transformation significantly improved the ligand efficiency/potency of the cyclized compound relative to its acyclic analogue. Additional optimization of the lactam-containing EZH2 inhibitors focused on lipophilic efficiency (LipE) improvement, which provided compound 31. Compound 31 displayed improved LipE and on-target potency in both biochemical and cellular readouts relative to compound 18. Inhibitor 31 also displayed robust in vivo antitumor growth activity and dose-dependent de-repression of EZH2 target genes.

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