TFIIS stimulates RNA cleavage by RNA polymerase II and promotes the resolution of backtracking events. TFIIS acts in the chromatin context, but its contribution to the chromatin landscape has not yet been investigated. Co-transcriptional chromatin alterations include subtle changes in nucleosome positioning, like those expected to be elicited by TFIIS, which are elusive to detect. The most popular method to map nucleosomes involves intensive chromatin digestion by micrococcal nuclease (MNase). Maps based on these exhaustively digested samples miss any MNase-sensitive nucleosomes caused by transcription. In contrast, partial digestion approaches preserve such nucleosomes, but introduce noise due to MNase sequence preferences. A systematic wa...
Nucleosome positioning is crucial for the genome's function. Though the role of DNA sequence in posi...
Abstract Background Recently, a number of high-resolution genome-wide maps of nucleosome locations i...
Abstract Background In eukaryotic organisms, DNA is packaged into chromatin structure, where most of...
Abstract Background TFIIS stimulates RNA cleavage by RNA polymerase II and promotes the resolution o...
TFIIS stimulates RNA cleavage by RNA polymerase II and promotes the resolution of backtracking event...
Understanding chromatin function requires knowing the precise location of nucleosomes. MNase-seq met...
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...
Additional file 8. Nucleosome positioning of genes with significant changes between wt and dst1∆. Ge...
Additional file 9. Nucleosome fuzziness in the wt and dst1∆. A) The metagene analysis of the fuzzine...
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-...
The analysis of chromatin structure is essential for the understanding of transcriptional regulation...
<p><p>Eukaryotic genomes have extensive flexibility and plasticity to modify transcription and repli...
Nucleosome positioning is crucial for the genome's function. Though the role of DNA sequence in posi...
Abstract Background Recently, a number of high-resolution genome-wide maps of nucleosome locations i...
Abstract Background In eukaryotic organisms, DNA is packaged into chromatin structure, where most of...
Abstract Background TFIIS stimulates RNA cleavage by RNA polymerase II and promotes the resolution o...
TFIIS stimulates RNA cleavage by RNA polymerase II and promotes the resolution of backtracking event...
Understanding chromatin function requires knowing the precise location of nucleosomes. MNase-seq met...
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...
Additional file 8. Nucleosome positioning of genes with significant changes between wt and dst1∆. Ge...
Additional file 9. Nucleosome fuzziness in the wt and dst1∆. A) The metagene analysis of the fuzzine...
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-...
The analysis of chromatin structure is essential for the understanding of transcriptional regulation...
<p><p>Eukaryotic genomes have extensive flexibility and plasticity to modify transcription and repli...
Nucleosome positioning is crucial for the genome's function. Though the role of DNA sequence in posi...
Abstract Background Recently, a number of high-resolution genome-wide maps of nucleosome locations i...
Abstract Background In eukaryotic organisms, DNA is packaged into chromatin structure, where most of...