BET bromodomain ligands: Probing the WPF shelf to improve BRD4 bromodomain affinity and metabolic stability

Symplectic ID
852973
Source
Ora (Hyrax)
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Sunday, 16 August, 2026 - 23:18
DOI
10.1016/j.bmc.2018.05.003
Publication Date
Tuesday, 15 May, 2018
First Page
2937
Last Page
2957
Keywords
Journal Article
Authors
Jennings, LE
Schiedel, M
Hewings, DS
Picaud, S
Laurin, CMC
Bruno, PA
Bluck, JP
Scorah, AR
See, L
Reynolds, JK
Moroglu, M
Mistry, IN
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1
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Abstract
Ligands for the bromodomain and extra-terminal domain (BET) family of bromodomains have shown promise as useful therapeutic agents for treating a range of cancers and inflammation. Here we report that our previously developed 3,5-dimethylisoxazole-based BET bromodomain ligand (OXFBD02) inhibits interactions of BRD4(1) with the RelA subunit of NF-κB, in addition to histone H4. This ligand shows a promising profile in a screen of the NCI-60 panel but was rapidly metabolised (t½ = 39.8 min). Structure-guided optimisation of compound properties led to the development of the 3-pyridyl-derived OXFBD04. Molecular dynamics simulations assisted our understanding of the role played by an internal hydrogen bond in altering the affinity of this series of molecules for BRD4(1). OXFBD04 shows improved BRD4(1) affinity (IC50 = 166 nM), optimised physicochemical properties (LE = 0.43; LLE = 5.74; SFI = 5.96), and greater metabolic stability (t½ = 388 min).
Publisher
Elsevier
ISSN
0968-0896
Journal Title
Bioorganic and Medicinal Chemistry
eISSN
1464-3391
Volume
26
Issue
11
ID at Source
uuid_8a90387b-56d0-4a89-89fd-ead0042e89c7
Publication Status
Published
Open access
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bioc0154,chem0489