Nucleosomes, the fundamental subunits of eukaryotic chromatin, are organised with respect to transcriptional start sites. A major challenge to the persistence of this organisation is the disassembly of nucleosomes during DNA replication. Here we use complimentary approaches to map the locations of nucleosomes on recently replicated DNA. We find that nucleosomes are substantially realigned with promoters during the minutes following DNA replication. As a result, the nucleosomal landscape is largely re-established before newly replicated chromosomes are partitioned into daughter cells and can serve as a platform for the reestablishment of gene expression programmes. When the supply of histones is disrupted through mutation of the chaperone Ca...
<p><p>Eukaryotic genomes have extensive flexibility and plasticity to modify transcription and repli...
AbstractNucleosomes assembled on regulatory DNA sites in chromatin repress gene expression; protein ...
The eukaryotic genome is packaged by wrapping ~147 bp units of DNA around histone octamers to form c...
Nucleosomes, the fundamental subunits of eukaryotic chromatin, are organised with respect to transcr...
Numerous chromatin remodeling enzymes position nucleosomes in eukaryotic cells. Aside from these fac...
Eukaryotic replication origin licensing, activation and timing are influenced by chromatin but a mec...
Arrays of regularly spaced nucleosomes dominate chromatin and are often phased by alignment to refer...
Packaging of genomic DNA into nucleosomes is nearly universally conserved in eukaryotes, and many fe...
SummaryChromatin is thought to carry epigenetic information from one generation to the next, althoug...
AbstractNucleosomes are preferentially assembled on replicating DNA by chromatin assembly factor 1; ...
Eukaryotic cells package their genomes into a nucleoprotein form called chromatin. The basic unit of...
The packaging of the eukaryotic genome into chromatin regulates the storage of genetic information, ...
Transcription is affected by nucleosomal resistance against polymerase passage. In turn, nucleosomal...
Background: Transcription is affected by nucleosomal resistance against polymerase passage. In turn,...
The importance of local chromatin structure in regulating replication initiation has become increasi...
<p><p>Eukaryotic genomes have extensive flexibility and plasticity to modify transcription and repli...
AbstractNucleosomes assembled on regulatory DNA sites in chromatin repress gene expression; protein ...
The eukaryotic genome is packaged by wrapping ~147 bp units of DNA around histone octamers to form c...
Nucleosomes, the fundamental subunits of eukaryotic chromatin, are organised with respect to transcr...
Numerous chromatin remodeling enzymes position nucleosomes in eukaryotic cells. Aside from these fac...
Eukaryotic replication origin licensing, activation and timing are influenced by chromatin but a mec...
Arrays of regularly spaced nucleosomes dominate chromatin and are often phased by alignment to refer...
Packaging of genomic DNA into nucleosomes is nearly universally conserved in eukaryotes, and many fe...
SummaryChromatin is thought to carry epigenetic information from one generation to the next, althoug...
AbstractNucleosomes are preferentially assembled on replicating DNA by chromatin assembly factor 1; ...
Eukaryotic cells package their genomes into a nucleoprotein form called chromatin. The basic unit of...
The packaging of the eukaryotic genome into chromatin regulates the storage of genetic information, ...
Transcription is affected by nucleosomal resistance against polymerase passage. In turn, nucleosomal...
Background: Transcription is affected by nucleosomal resistance against polymerase passage. In turn,...
The importance of local chromatin structure in regulating replication initiation has become increasi...
<p><p>Eukaryotic genomes have extensive flexibility and plasticity to modify transcription and repli...
AbstractNucleosomes assembled on regulatory DNA sites in chromatin repress gene expression; protein ...
The eukaryotic genome is packaged by wrapping ~147 bp units of DNA around histone octamers to form c...