3,5-Dimethylisoxazoles Act As Acetyl-lysine-mimetic Bromodomain Ligands

Histone–lysine acetylation is a vital chromatin post-translational modification involved in the epigenetic regulation of gene transcription. Bromodomains bind acetylated lysines, acting as readers of the histone-acetylation code. Competitive inhibitors of this interaction have antiproliferative and...

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Veröffentlicht in:Journal of medicinal chemistry 2011-10, Vol.54 (19), p.6761-6770
Hauptverfasser: Hewings, David S, Wang, Minghua, Philpott, Martin, Fedorov, Oleg, Uttarkar, Sagar, Filippakopoulos, Panagis, Picaud, Sarah, Vuppusetty, Chaitanya, Marsden, Brian, Knapp, Stefan, Conway, Stuart J, Heightman, Tom D
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Sprache:eng
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Zusammenfassung:Histone–lysine acetylation is a vital chromatin post-translational modification involved in the epigenetic regulation of gene transcription. Bromodomains bind acetylated lysines, acting as readers of the histone-acetylation code. Competitive inhibitors of this interaction have antiproliferative and anti-inflammatory properties. With 57 distinct bromodomains known, the discovery of subtype-selective inhibitors of the histone–bromodomain interaction is of great importance. We have identified the 3,5-dimethylisoxazole moiety as a novel acetyl-lysine bioisostere, which displaces acetylated histone-mimicking peptides from bromodomains. Using X-ray crystallographic analysis, we have determined the interactions responsible for the activity and selectivity of 4-substituted 3,5-dimethylisoxazoles against a selection of phylogenetically diverse bromodomains. By exploiting these interactions, we have developed compound 4d, which has IC50 values of
ISSN:0022-2623
1520-4804
DOI:10.1021/jm200640v