ACS Medicinal Chemistry Letters · 2019 · 34 citations · 16 references
Fragment-based ligand discovery has been successful in targeting diverse proteins. Despite drug-like molecules having more 3D character, traditional fragment libraries are largely composed of flat, aromatic fragments. The use of 3D-enriched fragments for enhancing library diversity is underexplored especially against protein-protein interactions. Here, we evaluate using 3D-enriched fragments against bromodomains. Bromodomains are highly ligandable, but selectivity remains challenging, particularly for bromodomain and extraterminal (BET) family bromodomains. We screened a 3D-enriched fragment library against BRD4(D1) via <sup>1</sup>H CPMG NMR with a protein-observed <sup>19</sup>F NMR secondary assay. The screen led to 29% of the hits that are selective over two related bromodomains, BRDT(D1) and BPTF, and the identification of underrepresented chemical bromodomain inhibitor scaffolds. Initial structure-activity relationship studies guided by X-ray crystallography led to a ligand-efficient thiazepane, with good selectivity and affinity for BET bromodomains. These results suggest that the incorporation of 3D-enriched fragments to increase library diversity can benefit bromodomain screening.
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Selective inhibition of BET bromodomains
P. Filippakopoulos, Jun Qi, S. Picaud et al. · Nature · 2010 · 4.2K citations · Full text
Histone Recognition and Large-Scale Structural Analysis of the Human Bromodomain Family
P. Filippakopoulos, S. Picaud, Maria Mangos et al. · Cell · 2012 · 1.7K citations · Full text