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

Authors :
Hovhannes J. Gukasyan
Michael R. Collins
Sutton Scott Channing
Kephart Susan Elizabeth
Shinji Yamazaki
Sacha Ninkovic
Simon Bergqvist
Fen Wang
Robert Arnold Kumpf
Michael Ryskin
Patrick Bingham
Pei-Pei Kung
Dominique Verhelle
Brian Yip
Karen A. Maegley
Robert A. Rollins
Peter A. Wells
Martha A. Ornelas
Buwen Huang
Valeria Fantin
Xiu Yu
Stephanie Scales
Wade Diehl
Indrawan James Mcalpine
Cody Krivacic
Mei Cui
Lisa Nguyen
Wenyue Hu
Tatlock John H
Dac M. Dinh
Martin James Wythes
Connie Fan
Gary Li
Martin Paul Edwards
Rui Eugene Yuanjin
John F. Braganza
Zehnder Luke Raymond
Wei-Guo Zhang
Source :
Journal of medicinal chemistry. 59(18)
Publication Year :
2016

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.

Details

ISSN :
15204804
Volume :
59
Issue :
18
Database :
OpenAIRE
Journal :
Journal of medicinal chemistry
Accession number :
edsair.doi.dedup.....f62bbe5fc41702928ba23fd544b9fadd