Lysine acetylation of histones defines the epigenetic status of human embryonic stem cells and orchestrates DNA replication, chromosome condensation, transcription, telomeric silencing, and DNA repair. A detailed mechanistic explanation of these phenomena is impeded by the limited availability of homogeneously acetylated histones. We report a general method for the production of homogeneously and site-specifically acetylated recombinant histones by genetically encoding acetyl-lysine. We reconstitute histone octamers, nucleosomes, and nucleosomal arrays bearing defined acetylated lysine residues. With these designer nucleosomes, we demonstrate that, in contrast to the prevailing dogma, acetylation of H3 K56 does not directly affect the compa...
The enzyme-catalyzed acetylation of the N-terminal tail domains of core histones provides a rich pot...
AbstractWe report the results of experiments designed to test the histone code hypothesis. We found ...
The role of chromatin and its modulation during DNA repair has become increasingly understood in rec...
Lysine acetylation of histones defines the epigenetic status of human embryonic stem cells and orche...
Lysine acetylation of histones defines the epigenetic status of human embryonic stem cells and orche...
Packaging the long and fragile genomes of eukaryotic species into nucleosomes is all well and good, ...
The nucleosome, comprising a histone protein core wrapped around by DNA, is the fundamental packing ...
In order to package the entire genome into a eukaryotic cell nucleus, structures called ‘nucleosomes...
AbstractA model is presented which explains the biological function of posttranslational acetylation...
Histone proteins provide the most basic form of structural organization for eukaryotic chromosomes. ...
AbstractWe report the results of experiments designed to test the histone code hypothesis. We found ...
SummaryChromatin assembly factor 1 (CAF-1) and Rtt106 participate in the deposition of newly synthes...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...
Posttranslational modification of histones plays a critical role in regulation of gene expression. T...
The enzyme-catalyzed acetylation of the N-terminal tail domains of core histones provides a rich pot...
AbstractWe report the results of experiments designed to test the histone code hypothesis. We found ...
The role of chromatin and its modulation during DNA repair has become increasingly understood in rec...
Lysine acetylation of histones defines the epigenetic status of human embryonic stem cells and orche...
Lysine acetylation of histones defines the epigenetic status of human embryonic stem cells and orche...
Packaging the long and fragile genomes of eukaryotic species into nucleosomes is all well and good, ...
The nucleosome, comprising a histone protein core wrapped around by DNA, is the fundamental packing ...
In order to package the entire genome into a eukaryotic cell nucleus, structures called ‘nucleosomes...
AbstractA model is presented which explains the biological function of posttranslational acetylation...
Histone proteins provide the most basic form of structural organization for eukaryotic chromosomes. ...
AbstractWe report the results of experiments designed to test the histone code hypothesis. We found ...
SummaryChromatin assembly factor 1 (CAF-1) and Rtt106 participate in the deposition of newly synthes...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...
Regulation of histone acetylation is fundamental to the utilization of eukaryotic genomes in chromat...
Posttranslational modification of histones plays a critical role in regulation of gene expression. T...
The enzyme-catalyzed acetylation of the N-terminal tail domains of core histones provides a rich pot...
AbstractWe report the results of experiments designed to test the histone code hypothesis. We found ...
The role of chromatin and its modulation during DNA repair has become increasingly understood in rec...