ABSTRACT: Members of the bromodomain and extra terminal (BET) family of proteins are essential for the recognition of acetylated lysine (KAc) residues in histones and have emerged as promising drug targets in cancer, inflammation, and contraception research. In co-crystallization screening campaigns using the first bromodomain of BRD4 (BRD4-1) against kinase inhibitor libraries, we identified and characterized 14 kinase inhibitors (10 distinct chemical scaffolds) as ligands of the KAc binding site. Among these, the PLK1 inhibitor BI2536 and the JAK2 inhibitor TG101209 displayed strongest inhibitory potential against BRD4 (IC50 = 25 nM and 130 nM, respectively) and high selectivity for BET bromodomains. Comparative structural analysis reveal...
Bromodomains, protein modules found in 46 human chromatin-associated proteins, bind to acetylated ly...
Several human diseases, including cancer, show altered signaling pathways resulting from changes in ...
Bromodomains (BRDs) are protein interaction modules that specifically recognize ε-N-lysine acetylati...
Members of the bromodomain and extra terminal (BET) family of proteins are essential for the recogni...
Epigenetic proteins are intently pursued targets in ligand discovery. So far, successful efforts hav...
Bromodomains (BRDs) are epigenetic readers that recognize acetylated-lysine (KAc) on proteins and ar...
Bromodomain protein 4 (BRD4) is a member of the bromodomain and extra-terminal domain (BET) protein ...
The Bromodomain (BRD4) and extra-terminal (BET) protein family are reversible; lysine-acetylated epi...
The bromo and extra C-terminal domain (BET) family of bromodomains (BRDs) are involved in binding ep...
Bromodomains are evolutionarily conserved structural motifs that recognize acetylated lysine residue...
Bromodomains (BRDs) recognize acetyl-lysine modified histone tails mediating epigenetic processes. B...
Bromodomains (BRDs) are protein interaction modules that selectively recognize ε-N-acetylated lysine...
Lysine acetylation is a key mechanism that regulates chromatin structure; aberrant acetylation level...
The epigenetic “reader” modules bromodomains (BRDs) exert their diverse cellular functions through t...
International audienceBromodomains are epigenetic readers of histone acetylation involved in chromat...
Bromodomains, protein modules found in 46 human chromatin-associated proteins, bind to acetylated ly...
Several human diseases, including cancer, show altered signaling pathways resulting from changes in ...
Bromodomains (BRDs) are protein interaction modules that specifically recognize ε-N-lysine acetylati...
Members of the bromodomain and extra terminal (BET) family of proteins are essential for the recogni...
Epigenetic proteins are intently pursued targets in ligand discovery. So far, successful efforts hav...
Bromodomains (BRDs) are epigenetic readers that recognize acetylated-lysine (KAc) on proteins and ar...
Bromodomain protein 4 (BRD4) is a member of the bromodomain and extra-terminal domain (BET) protein ...
The Bromodomain (BRD4) and extra-terminal (BET) protein family are reversible; lysine-acetylated epi...
The bromo and extra C-terminal domain (BET) family of bromodomains (BRDs) are involved in binding ep...
Bromodomains are evolutionarily conserved structural motifs that recognize acetylated lysine residue...
Bromodomains (BRDs) recognize acetyl-lysine modified histone tails mediating epigenetic processes. B...
Bromodomains (BRDs) are protein interaction modules that selectively recognize ε-N-acetylated lysine...
Lysine acetylation is a key mechanism that regulates chromatin structure; aberrant acetylation level...
The epigenetic “reader” modules bromodomains (BRDs) exert their diverse cellular functions through t...
International audienceBromodomains are epigenetic readers of histone acetylation involved in chromat...
Bromodomains, protein modules found in 46 human chromatin-associated proteins, bind to acetylated ly...
Several human diseases, including cancer, show altered signaling pathways resulting from changes in ...
Bromodomains (BRDs) are protein interaction modules that specifically recognize ε-N-lysine acetylati...