SummaryHistone acetylation constitutes an epigenetic mark for transcriptional regulation. Here we developed a fluorescent probe to visualize acetylation of histone H4 Lys12 (H4K12) in living cells using fluorescence resonance energy transfer (FRET) and the binding of the BRD2 bromodomain to acetylated H4K12. Using this probe designated as Histac-K12, we demonstrated that histone H4K12 acetylation is retained in mitosis and that some histone deacetylase (HDAC) inhibitors continue to inhibit cellular HDAC activity even after their removal from the culture. In addition, a small molecule that interferes with ability of the bromodomain to bind to acetylated H4K12 could be assessed using Histac-K12 in cells. Thus, Histac-K12 will serve as a power...
International audienceIn addition to acetylation, histones are modified by a series of competing lon...
The method describes the detection of exogenous histone H3K18 acetylation in Hela cells. I specifica...
Background: Reversible histone acetylation affects chromatin structural organization, thus regulatin...
Histone proteins provide the most basic form of structural organization for eukaryotic chromosomes. ...
AbstractProliferation and cell cycle progression of eukaryotic cells are closely linked to changes i...
Recent studies have established that the highly condensed and transcriptionally silent heterochromat...
Histone acetylation is generally associated with gene activation and chromatin decondensation. Recen...
Histone deacetylase 1 (HDAC1) and HDAC2 are critical catalytic subunits of six distinct coregulator ...
Histone acetylation has long been determined as a highly dynamic modification associated with open c...
Histone lysine acetylation and methylation are important during gene transcription in a chromatin co...
Gene expression in eukaryotes is regulated by epigenetic mechanisms such as histone acetylation and ...
The dramatic reorganization of chromatin during mitosis is perhaps one of the most fundamental of al...
AbstractCore histones can be modified by reversible, posttranslational acetylation of specific lysin...
Histone lysine acetylation is a key component of epigenetic regulation of gene transcription. Bromod...
Gene expression is regulated by chromatin remodeling factors and histone modifications, such as phos...
International audienceIn addition to acetylation, histones are modified by a series of competing lon...
The method describes the detection of exogenous histone H3K18 acetylation in Hela cells. I specifica...
Background: Reversible histone acetylation affects chromatin structural organization, thus regulatin...
Histone proteins provide the most basic form of structural organization for eukaryotic chromosomes. ...
AbstractProliferation and cell cycle progression of eukaryotic cells are closely linked to changes i...
Recent studies have established that the highly condensed and transcriptionally silent heterochromat...
Histone acetylation is generally associated with gene activation and chromatin decondensation. Recen...
Histone deacetylase 1 (HDAC1) and HDAC2 are critical catalytic subunits of six distinct coregulator ...
Histone acetylation has long been determined as a highly dynamic modification associated with open c...
Histone lysine acetylation and methylation are important during gene transcription in a chromatin co...
Gene expression in eukaryotes is regulated by epigenetic mechanisms such as histone acetylation and ...
The dramatic reorganization of chromatin during mitosis is perhaps one of the most fundamental of al...
AbstractCore histones can be modified by reversible, posttranslational acetylation of specific lysin...
Histone lysine acetylation is a key component of epigenetic regulation of gene transcription. Bromod...
Gene expression is regulated by chromatin remodeling factors and histone modifications, such as phos...
International audienceIn addition to acetylation, histones are modified by a series of competing lon...
The method describes the detection of exogenous histone H3K18 acetylation in Hela cells. I specifica...
Background: Reversible histone acetylation affects chromatin structural organization, thus regulatin...