Epigenetic proteins are intently pursued targets in ligand discovery. So far, successful efforts have been limited to chromatin modifying enzymes, or so-called epigenetic 'writers' and 'erasers'. Potent inhibitors of histone binding modules have not yet been described. Here we report a cell-permeable small molecule (JQ1) that binds competitively to acetyl-lysine recognition motifs, or bromodomains. High potency and specificity towards a subset of human bromodomains is explained by co-crystal structures with bromodomain and extra-terminal (BET) family member BRD4, revealing excellent shape complementarity with the acetyl-lysine binding cavity. Recurrent translocation of BRD4 is observed in a genetically-defined, incurable subtype of human sq...
Allele-specific chemical genetics enables selective inhibition within families of highly-conserved p...
The Bromo- and Extra-Terminal (BET) proteins BRD2, BRD3, and BRD4 play important roles in transcript...
Cellular signaling is often propagated by multivalent interactions. Multivalency creates avidity, al...
Epigenetic proteins are intently pursued targets in ligand discovery. So far, successful efforts hav...
Small molecules are useful tools for probing the biological function and therapeutic potential of in...
International audienceBromodomains are epigenetic readers of histone acetylation involved in chromat...
Bromodomain protein 4 (BRD4) is a member of the bromodomain and extra-terminal domain (BET) protein ...
Bromodomains (BRDs) are conserved protein interaction modules which recognize (read) acetyl-lysine m...
The Bromodomain (BRD4) and extra-terminal (BET) protein family are reversible; lysine-acetylated epi...
Lysine acetylation is a key mechanism that regulates chromatin structure; aberrant acetylation level...
The Bromo- and Extra-Terminal (BET) proteins BRD2, BRD3, and BRD4 play important roles in transcript...
ABSTRACT: Members of the bromodomain and extra terminal (BET) family of proteins are essential for t...
The posttranslational modification of chromatin through acetylation at selected histone lysine resid...
Bromodomains (BRDs) recognize acetyl-lysine modified histone tails mediating epigenetic processes. B...
Allele-specific chemical genetics enables selective inhibition within families of highly-conserved p...
The Bromo- and Extra-Terminal (BET) proteins BRD2, BRD3, and BRD4 play important roles in transcript...
Cellular signaling is often propagated by multivalent interactions. Multivalency creates avidity, al...
Epigenetic proteins are intently pursued targets in ligand discovery. So far, successful efforts hav...
Small molecules are useful tools for probing the biological function and therapeutic potential of in...
International audienceBromodomains are epigenetic readers of histone acetylation involved in chromat...
Bromodomain protein 4 (BRD4) is a member of the bromodomain and extra-terminal domain (BET) protein ...
Bromodomains (BRDs) are conserved protein interaction modules which recognize (read) acetyl-lysine m...
The Bromodomain (BRD4) and extra-terminal (BET) protein family are reversible; lysine-acetylated epi...
Lysine acetylation is a key mechanism that regulates chromatin structure; aberrant acetylation level...
The Bromo- and Extra-Terminal (BET) proteins BRD2, BRD3, and BRD4 play important roles in transcript...
ABSTRACT: Members of the bromodomain and extra terminal (BET) family of proteins are essential for t...
The posttranslational modification of chromatin through acetylation at selected histone lysine resid...
Bromodomains (BRDs) recognize acetyl-lysine modified histone tails mediating epigenetic processes. B...
Allele-specific chemical genetics enables selective inhibition within families of highly-conserved p...
The Bromo- and Extra-Terminal (BET) proteins BRD2, BRD3, and BRD4 play important roles in transcript...
Cellular signaling is often propagated by multivalent interactions. Multivalency creates avidity, al...