Eukaryotic replication origin licensing, activation and timing are influenced by chromatin but a mechanistic understanding is lacking. Using reconstituted nucleosomal DNA replication assays, we assessed the impact of nucleosomes on replication initiation. To generate distinct nucleosomal landscapes, different chromatin-remodeling enzymes (CREs) were used to remodel nucleosomes on origin-DNA templates. Nucleosomal organization influenced two steps of replication initiation: origin licensing and helicase activation. Origin licensing assays showed that local nucleosome positioning enhanced origin specificity and modulated helicase loading by influencing ORC DNA binding. Interestingly, SWI/SNF- and RSC-remodeled nucleosomes were permissive for ...
AbstractNucleosomes are preferentially assembled on replicating DNA by chromatin assembly factor 1; ...
The Saccharomyces cerevisiae origin recognition complex (ORC) binds to replication origins at the AR...
DNA replication in metazoans initiates from multiple chromosomal loci called origins. Currently, the...
Eukaryotic replication origin licensing, activation and timing are influenced by chromatin but a mec...
The importance of local chromatin structure in regulating replication initiation has become increasi...
<p>The accurate and timely replication of eukaryotic DNA during S-phase is of critical importance fo...
Nucleosomes, the fundamental subunits of eukaryotic chromatin, are organised with respect to transcr...
Selection and licensing of mammalian DNA replication origins may be regulated by epigenetic changes ...
The origin recognition complex (ORC) is essential for initiation of eukaryotic chromosome replicatio...
DNA replication initiates at replication origins and involves the ordered assembly of a pre-Replicat...
SummaryChromatin is thought to carry epigenetic information from one generation to the next, althoug...
<p><p>Eukaryotic genomes have extensive flexibility and plasticity to modify transcription and repli...
Nucleosomes provide additional regulatory mechanisms to transcription and DNA replication by mediati...
AbstractEukaryotic chromatin assembly factor 1 forms a protein complex that mediates the assembly of...
In eukaryotes, DNA replication initiates from multiple origins of replication for timely genome dupl...
AbstractNucleosomes are preferentially assembled on replicating DNA by chromatin assembly factor 1; ...
The Saccharomyces cerevisiae origin recognition complex (ORC) binds to replication origins at the AR...
DNA replication in metazoans initiates from multiple chromosomal loci called origins. Currently, the...
Eukaryotic replication origin licensing, activation and timing are influenced by chromatin but a mec...
The importance of local chromatin structure in regulating replication initiation has become increasi...
<p>The accurate and timely replication of eukaryotic DNA during S-phase is of critical importance fo...
Nucleosomes, the fundamental subunits of eukaryotic chromatin, are organised with respect to transcr...
Selection and licensing of mammalian DNA replication origins may be regulated by epigenetic changes ...
The origin recognition complex (ORC) is essential for initiation of eukaryotic chromosome replicatio...
DNA replication initiates at replication origins and involves the ordered assembly of a pre-Replicat...
SummaryChromatin is thought to carry epigenetic information from one generation to the next, althoug...
<p><p>Eukaryotic genomes have extensive flexibility and plasticity to modify transcription and repli...
Nucleosomes provide additional regulatory mechanisms to transcription and DNA replication by mediati...
AbstractEukaryotic chromatin assembly factor 1 forms a protein complex that mediates the assembly of...
In eukaryotes, DNA replication initiates from multiple origins of replication for timely genome dupl...
AbstractNucleosomes are preferentially assembled on replicating DNA by chromatin assembly factor 1; ...
The Saccharomyces cerevisiae origin recognition complex (ORC) binds to replication origins at the AR...
DNA replication in metazoans initiates from multiple chromosomal loci called origins. Currently, the...