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Optimization of Orally Bioavailable Enhancer of Zeste Homolog 2 (EZH2) Inhibitors Using Ligand and Property-Based Design Strategies: Identification of Development Candidate (R)-5,8-Dichloro-7-(methoxy(oxetan-3-yl)methyl)-2-((4-methoxy-6-methyl-2-oxo-1,2-dihydropyridin-3-yl)methyl)-3,4-dihydroisoquinolin-1(2H)-one (PF-06821497)

Authors :
Kung, Pei-Pei
Bingham, Patrick
Brooun, Alexei
Collins, Michael
Deng, Ya-Li
Dinh, Dac
Fan, Connie
Gajiwala, Ketan S.
Grantner, Rita
Gukasyan, Hovhannes J.
Hu, Wenyue
Huang, Buwen
Kania, Robert
Kephart, Susan E.
Krivacic, Cody
Kumpf, Robert A.
Khamphavong, Penney
Kraus, Manfred
Liu, Wei
Maegley, Karen A.
Nguyen, Lisa
Ren, Shijian
Richter, Dan
Rollins, Robert A.
Sach, Neal
Sharma, Shikhar
Sherrill, John
Spangler, Jillian
Stewart, Albert E.
Sutton, Scott
Uryu, Sean
Verhelle, Dominique
Wang, Hui
Wang, Shuiwang
Wythes, Martin
Xin, Shuibo
Yamazaki, Shinji
Zhu, Huichun
Zhu, JinJiang
Zehnder, Luke
Edwards, Martin
Source :
Journal of Medicinal Chemistry; 20240101, Issue: Preprints
Publication Year :
2024

Abstract

A new series of lactam-derived EZH2 inhibitors was designed via ligand-based and physicochemical-property-based strategies to address metabolic stability and thermodynamic solubility issues associated with previous lead compound 1. The new inhibitors incorporated an sp3hybridized carbon atom at the 7-position of the lactam moiety present in lead compound 1as a replacement for a dimethylisoxazole group. This transformation enabled optimization of the physicochemical properties and potency compared to compound 1. Analysis of relationships between calculated log D(clogD) values and in vitro metabolic stability and permeability parameters identified a clogD range that afforded an increased probability of achieving favorable ADME data in a single molecule. Compound 23aexhibited the best overlap of potency and pharmaceutical properties as well as robust tumor growth inhibition in vivo and was therefore advanced as a development candidate (PF-06821497). A crystal structure of 23ain complex with the three-protein PRC2 complex enabled understanding of the key structural features required for optimal binding.

Details

Language :
English
ISSN :
00222623 and 15204804
Issue :
Preprints
Database :
Supplemental Index
Journal :
Journal of Medicinal Chemistry
Publication Type :
Periodical
Accession number :
ejs44178378
Full Text :
https://doi.org/10.1021/acs.jmedchem.7b01375