SummaryEukaryotic genomes are packaged into nucleosomes whose position and chemical modification state can profoundly influence regulation of gene expression. We profiled nucleosome modifications across the yeast genome using chromatin immunoprecipitation coupled with DNA microarrays to produce high-resolution genome-wide maps of histone acetylation and methylation. These maps take into account changes in nucleosome occupancy at actively transcribed genes and, in doing so, revise previous assessments of the modifications associated with gene expression. Both acetylation and methylation of histones are associated with transcriptional activity, but the former occurs predominantly at the beginning of genes, whereas the latter can occur through...
SummaryNucleosome structural integrity underlies the regulation of DNA metabolism and transcription....
SummaryIn Saccharomyces cerevisiae, known histone acetylation sites regulating gene activity are loc...
The packaging of eukaryotic genomes into nucleosomes plays critical roles in all DNA-templated proce...
SummaryEukaryotic genomes are packaged into nucleosomes whose position and chemical modification sta...
Determining the effect of DNA methylation on chromatin structure and function in higher organisms is...
SummaryHistone modifications are implicated in influencing gene expression. We have generated high-r...
AbstractHistone residues can serve as platforms for specific regulatory function. Here we constructe...
<div><p>(A) Modification patterns of nucleosomes associated with actively transcribed genes. Genes w...
<div><p>Covalent modification of histone proteins plays a role in virtually every process on eukaryo...
Covalent histone modifications are highly conserved and play multiple roles in eukaryotic transcript...
Aims: To map histone modifications with unprecedented resolution both globally and locus-specificall...
The enrichment of histone acetylation within transcribed chromatin was first observed in the 1960s, ...
The posttranslational modification of histones by acetylation or methylation regulates chromatin str...
Histone lysine (K) acetylation is a major mechanism by which cells regulate the structure and functi...
Eukaryotic DNA is packaged in chromatin, whose repeating subunit, the nucleosome, consists of an oct...
SummaryNucleosome structural integrity underlies the regulation of DNA metabolism and transcription....
SummaryIn Saccharomyces cerevisiae, known histone acetylation sites regulating gene activity are loc...
The packaging of eukaryotic genomes into nucleosomes plays critical roles in all DNA-templated proce...
SummaryEukaryotic genomes are packaged into nucleosomes whose position and chemical modification sta...
Determining the effect of DNA methylation on chromatin structure and function in higher organisms is...
SummaryHistone modifications are implicated in influencing gene expression. We have generated high-r...
AbstractHistone residues can serve as platforms for specific regulatory function. Here we constructe...
<div><p>(A) Modification patterns of nucleosomes associated with actively transcribed genes. Genes w...
<div><p>Covalent modification of histone proteins plays a role in virtually every process on eukaryo...
Covalent histone modifications are highly conserved and play multiple roles in eukaryotic transcript...
Aims: To map histone modifications with unprecedented resolution both globally and locus-specificall...
The enrichment of histone acetylation within transcribed chromatin was first observed in the 1960s, ...
The posttranslational modification of histones by acetylation or methylation regulates chromatin str...
Histone lysine (K) acetylation is a major mechanism by which cells regulate the structure and functi...
Eukaryotic DNA is packaged in chromatin, whose repeating subunit, the nucleosome, consists of an oct...
SummaryNucleosome structural integrity underlies the regulation of DNA metabolism and transcription....
SummaryIn Saccharomyces cerevisiae, known histone acetylation sites regulating gene activity are loc...
The packaging of eukaryotic genomes into nucleosomes plays critical roles in all DNA-templated proce...