AbstractWe have mapped sequence-directed nucleosome positioning on genomic DNA molecules using high-throughput sequencing. Chromatins, prepared by reconstitution with either chicken or frog histones, were separately digested to mononucleosomes using either micrococcal nuclease (MNase) or caspase-activated DNase (CAD). Both enzymes preferentially cleave internucleosomal (linker) DNA, although they do so by markedly different mechanisms. MNase has hitherto been very widely used to map nucleosomes, although concerns have been raised over its potential to introduce bias. Having identified the locations and quantified the strength of both the chicken or frog histone octamer binding sites on each DNA, the results obtained with the two enzymes wer...
<div><p>Nucleosomes are important for gene regulation because their arrangement on the genome can co...
TFIIS stimulates RNA cleavage by RNA polymerase II and promotes the resolution of backtracking event...
textabstractNucleosomal DNA is thought to be generally inaccessible to DNA-binding factors, such as ...
We have mapped sequence-directed nucleosome positioning on genomic DNA molecules using high-throughp...
AbstractWe have mapped sequence-directed nucleosome positioning on genomic DNA molecules using high-...
Eukaryotic genomes are packed into chromatin, whose basic repeating unit is the nucleosome. Nucleoso...
Eukaryotic genomes are packed into chromatin, whose basic repeating unit is the nucleosome. Nucleoso...
Eukaryotic genomes are packed into chromatin, whose basic repeating unit is the nucleosome. Nucleoso...
Nucleosomes are the basic repeating units of eukaryotic chromatin. They play important roles in chro...
Chromatin accessibility plays a fundamental role in gene regulation. Nucleosome placement, usually m...
Nucleosomes are important for gene regulation because their arrangement on the genome can control wh...
Abstract Background TFIIS stimulates RNA cleavage by RNA polymerase II and promotes the resolution o...
Understanding chromatin function requires knowing the precise location of nucleosomes. MNase-seq met...
TFIIS stimulates RNA cleavage by RNA polymerase II and promotes the resolution of backtracking event...
AbstractUsing high-throughput sequencing, we have mapped sequence-directed nucleosome positioning in...
<div><p>Nucleosomes are important for gene regulation because their arrangement on the genome can co...
TFIIS stimulates RNA cleavage by RNA polymerase II and promotes the resolution of backtracking event...
textabstractNucleosomal DNA is thought to be generally inaccessible to DNA-binding factors, such as ...
We have mapped sequence-directed nucleosome positioning on genomic DNA molecules using high-throughp...
AbstractWe have mapped sequence-directed nucleosome positioning on genomic DNA molecules using high-...
Eukaryotic genomes are packed into chromatin, whose basic repeating unit is the nucleosome. Nucleoso...
Eukaryotic genomes are packed into chromatin, whose basic repeating unit is the nucleosome. Nucleoso...
Eukaryotic genomes are packed into chromatin, whose basic repeating unit is the nucleosome. Nucleoso...
Nucleosomes are the basic repeating units of eukaryotic chromatin. They play important roles in chro...
Chromatin accessibility plays a fundamental role in gene regulation. Nucleosome placement, usually m...
Nucleosomes are important for gene regulation because their arrangement on the genome can control wh...
Abstract Background TFIIS stimulates RNA cleavage by RNA polymerase II and promotes the resolution o...
Understanding chromatin function requires knowing the precise location of nucleosomes. MNase-seq met...
TFIIS stimulates RNA cleavage by RNA polymerase II and promotes the resolution of backtracking event...
AbstractUsing high-throughput sequencing, we have mapped sequence-directed nucleosome positioning in...
<div><p>Nucleosomes are important for gene regulation because their arrangement on the genome can co...
TFIIS stimulates RNA cleavage by RNA polymerase II and promotes the resolution of backtracking event...
textabstractNucleosomal DNA is thought to be generally inaccessible to DNA-binding factors, such as ...