Optimization of 3,5-dimethylisoxazole derivatives as potent bromodomain ligands.

Symplectic ID
390906
Source
PubMed
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Saturday, 29 August, 2026 - 19:00
DOI
10.1021/jm301588r
Publication Date
Thursday, 25 April, 2013
First Page
3217
Last Page
3227
Keywords
Acetylation
CREB-Binding Protein
Cell Cycle Proteins
Cell Line, Tumor
Crystallography, X-Ray
Histones
Humans
Inhibitory Concentration 50
Isoxazoles
Ligands
Lysine
Nuclear Proteins
Protein Binding
Structure-Activity Relationship
Transcription Factors
Bromodomain Containing Proteins
Authors
Hewings, DS
Fedorov, O
Filippakopoulos, P
Martin, S
Picaud, S
Tumber, A
Wells, C
Olcina, MM
Freeman, K
Gill, A
Ritchie, AJ
Sheppard, DW
Authors list has been truncated
1
Editors list has been truncated
Abstract
The bromodomain protein module, which binds to acetylated lysine, is emerging as an important epigenetic therapeutic target. We report the structure-guided optimization of 3,5-dimethylisoxazole derivatives to develop potent inhibitors of the BET (bromodomain and extra terminal domain) bromodomain family with good ligand efficiency. X-ray crystal structures of the most potent compounds reveal key interactions required for high affinity at BRD4(1). Cellular studies demonstrate that the phenol and acetate derivatives of the lead compounds showed strong antiproliferative effects on MV4;11 acute myeloid leukemia cells, as shown for other BET bromodomain inhibitors and genetic BRD4 knockdown, whereas the reported compounds showed no general cytotoxicity in other cancer cell lines tested.
Journal Title
J Med Chem
eISSN
1520-4804
Volume
56
Issue
8
ID at Source
23517011
Publication Status
Published
Open access
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chem0489,newc0612