Isoquinoline compounds and their use as inhibitors of HPK1 (hematopoietic kinase 1) are described. The compounds are useful in treating HPK1-dependent disorders and enhancing an immune response. Also described are methods of inhibitng HPK1, methods of treating HPK1-dependent disorders, methods for enhancing an immune response, and methods for preparing the isoquinoline compounds.
[EN] NOVEL TRICYCLIC COMPOUNDS AS INHIBITORS OF MUTANT IDH ENZYMES<br/>[FR] NOUVEAUX COMPOSÉS TRICYCLIQUES COMME INHIBITEURS D'ENZYMES IDH MUTANTES
申请人:MERCK SHARP & DOHME
公开号:WO2016089833A1
公开(公告)日:2016-06-09
The present invention is directed to tricyclic compounds of formula (I) which are inhibitors of one or more mutant IDH enzymes: (I); wherein A is -C(R1)= or -N=; and X is selected from the group consisting of: (II-i), (II-ii), (II-iii), and (II-iv). The present invention is also directed to uses of the tricyclic compounds described herein in the potential treatment or prevention of cancers in which one or more mutant IDH enzymes are involved. The present invention is also directed to compositions comprising these compounds. The present invention is also directed to uses of these compositions in the potential prevention or treatment of such cancers.
herein a supramolecular catalyst harnessing Zn⋅⋅⋅N interactions that binds to pyridine-like substrates as tight as it can be found in some enzymes. The distance and spatial geometry between the active site and the substrate binding site is ideal to target unprecedented meta-selective iridium-catalyzed C−Hbondborylations with enzymatic Michaelis–Menten kinetics, besides unique substrate selectivity and
Diverse, Potent, and Efficacious Inhibitors That Target the EED Subunit of the Polycomb Repressive Complex 2 Methyltransferase
作者:Sharan K. Bagal、Clare Gregson、Daniel H. O’ Donovan、Kurt G. Pike、Andrew Bloecher、Peter Barton、Alexandra Borodovsky、Erin Code、Shaun M. Fillery、Jessie Hao-Ru Hsu、Sameer P. Kawatkar、Chengzhi Li、David Longmire、Youfeng Nai、Samuel C. Nash、Andrew Pike、James Robinson、Jon A. Read、Phillip B. Rawlins、Minhui Shen、Jia Tang、Peng Wang、Haley Woods、Beth Williamson
DOI:10.1021/acs.jmedchem.1c01161
日期:2021.12.9
histone methyltransferase polycomb repressive complex 2 (PRC2) has been linked to several cancers, with small-molecule inhibitors of the catalytic subunit of the PRC2 enhancer of zestehomologue2 (EZH2) being recently approved for the treatment of epithelioid sarcoma (ES) and follicular lymphoma (FL). Compounds binding to the EED subunit of PRC2 have recently emerged as allosteric inhibitors of PRC2