Little is known about how combinations of histone marks are interpreted at the level of nucleosomes. The second PHD finger of human BPTF is known to specifically recognize histone H3 when methylated on lysine 4 (H3K4me2/3). Here, we examine how additional heterotypic modifications influence BPTF binding. Using peptide surrogates, three acetyllysine ligands are indentified for a PHD-adjacent bromodomain in BPTF via systematic screening and biophysical characterization. Although the bromodomain displays limited discrimination among the three possible acetyllysines at the peptide level, marked selectivity is observed for only one of these sites, H4K16ac, in combination with H3K4me3 at the mononucleosome level. In support, these two histone mar...
The DNA in our bodies is wrapped around octamers of histone proteins to form nucleosomes. This struc...
SummaryBromodomains (BRDs) are protein interaction modules that specifically recognize ε-N-lysine ac...
Open access article. Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International Lice...
SummaryLittle is known about how combinations of histone marks are interpreted at the level of nucle...
Little is known about how combinations of histone marks are interpreted at the level of nucleosomes....
Bromodomains are critical components of many chromatin modifying/remodelling proteins and are emergi...
SummaryHistone lysine acetylation is central to epigenetic control of gene transcription. Bromodomai...
In nucleosomes, histone N-terminal tails exist in dynamic equilibrium between free/accessible and co...
Histone tail modifications control many nuclear processes by dictating the dynamic exchange of regul...
Post-translational histone modifications and linker histone incorporation regulate chromatin structu...
SummaryIncreasing evidence suggests that histone posttranslational modifications (PTMs) function in ...
SummaryBromodomain functions as the acetyl-lysine binding domains to regulate gene transcription in ...
The combination and interaction of histone marks and DNA-associated proteins are critical in the re...
Abstract Background Histone posttranslational modifications (PTMs) function to regulate chromatin st...
LetterInternational audienceA key step in many chromatin-related processes is the recognition of his...
The DNA in our bodies is wrapped around octamers of histone proteins to form nucleosomes. This struc...
SummaryBromodomains (BRDs) are protein interaction modules that specifically recognize ε-N-lysine ac...
Open access article. Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International Lice...
SummaryLittle is known about how combinations of histone marks are interpreted at the level of nucle...
Little is known about how combinations of histone marks are interpreted at the level of nucleosomes....
Bromodomains are critical components of many chromatin modifying/remodelling proteins and are emergi...
SummaryHistone lysine acetylation is central to epigenetic control of gene transcription. Bromodomai...
In nucleosomes, histone N-terminal tails exist in dynamic equilibrium between free/accessible and co...
Histone tail modifications control many nuclear processes by dictating the dynamic exchange of regul...
Post-translational histone modifications and linker histone incorporation regulate chromatin structu...
SummaryIncreasing evidence suggests that histone posttranslational modifications (PTMs) function in ...
SummaryBromodomain functions as the acetyl-lysine binding domains to regulate gene transcription in ...
The combination and interaction of histone marks and DNA-associated proteins are critical in the re...
Abstract Background Histone posttranslational modifications (PTMs) function to regulate chromatin st...
LetterInternational audienceA key step in many chromatin-related processes is the recognition of his...
The DNA in our bodies is wrapped around octamers of histone proteins to form nucleosomes. This struc...
SummaryBromodomains (BRDs) are protein interaction modules that specifically recognize ε-N-lysine ac...
Open access article. Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International Lice...