Bromodomains (BRDs) are protein interaction modules that specifically recognize ε-N-lysine acetylation motifs, a key event in the reading process of epigenetic marks. The 61 BRDs in the human genome cluster into eight families based on structure/sequence similarity. Here, we present 29 high-resolution crystal structures, covering all BRD families. Comprehensive crossfamily structural analysis identifies conserved and family-specific structural features that are necessary for specific acetylation-dependent substrate recognition. Screening of more than 30 representative BRDs against systematic histone-peptide arrays identifies new BRD substrates and reveals a strong influence of flanking posttranslational modifications, such as acetylation an...
SummaryBromodomains are epigenetic readers that are recruited to acetyllysine residues in histone ta...
Open access article. Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International Lice...
Recent data demonstrate that small synthetic compounds specifically targeting bromodomain proteins c...
SummaryBromodomains (BRDs) are protein interaction modules that specifically recognize ε-N-lysine ac...
Bromodomains (BRDs) are protein interaction modules that specifically recognize ε-N-lysine acetylati...
SummaryBromodomain functions as the acetyl-lysine binding domains to regulate gene transcription in ...
Bromodomains are critical components of many chromatin modifying/remodelling proteins and are emergi...
-N-acetylation of lysine residues (K ac) is one of the most abundant post-translation modifications ...
Bromodomains, epigenetic readers that recognize acetylated lysine residues in histone tails, are pot...
Abstractε-N-acetylation of lysine residues (Kac) is one of the most abundant post-translation modifi...
ε-N-acetylation of lysine residues (K(ac)) is one of the most abundant post-translation modification...
AbstractBromodomains, an extensive family of evolutionarily conserved protein modules originally fou...
AbstractBromodomain-PHD finger protein 1 (BRPF1) is part of the MOZ HAT complex and contains a uniqu...
SummaryHistone lysine acetylation is central to epigenetic control of gene transcription. Bromodomai...
Elegant mechanisms of gene regulation have evolved to support specialised function and complexity in...
SummaryBromodomains are epigenetic readers that are recruited to acetyllysine residues in histone ta...
Open access article. Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International Lice...
Recent data demonstrate that small synthetic compounds specifically targeting bromodomain proteins c...
SummaryBromodomains (BRDs) are protein interaction modules that specifically recognize ε-N-lysine ac...
Bromodomains (BRDs) are protein interaction modules that specifically recognize ε-N-lysine acetylati...
SummaryBromodomain functions as the acetyl-lysine binding domains to regulate gene transcription in ...
Bromodomains are critical components of many chromatin modifying/remodelling proteins and are emergi...
-N-acetylation of lysine residues (K ac) is one of the most abundant post-translation modifications ...
Bromodomains, epigenetic readers that recognize acetylated lysine residues in histone tails, are pot...
Abstractε-N-acetylation of lysine residues (Kac) is one of the most abundant post-translation modifi...
ε-N-acetylation of lysine residues (K(ac)) is one of the most abundant post-translation modification...
AbstractBromodomains, an extensive family of evolutionarily conserved protein modules originally fou...
AbstractBromodomain-PHD finger protein 1 (BRPF1) is part of the MOZ HAT complex and contains a uniqu...
SummaryHistone lysine acetylation is central to epigenetic control of gene transcription. Bromodomai...
Elegant mechanisms of gene regulation have evolved to support specialised function and complexity in...
SummaryBromodomains are epigenetic readers that are recruited to acetyllysine residues in histone ta...
Open access article. Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International Lice...
Recent data demonstrate that small synthetic compounds specifically targeting bromodomain proteins c...