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The chaperone FACT and H2B ubiquitination maintain S. pombe genome architecture through genic and subtelomeric functions
PubMed Full text in PMC Similar studies
The chaperone FACT and H2B ubiquitination maintain S. pombe genome architecture through genic and subtelomeric functions [ChIP-Seq]
PubMed Full text in PMC Similar studies SRA Run Selector
The chaperone FACT and H2B ubiquitination maintain S. pombe genome architecture through genic and subtelomeric functions [MNase-seq]
The chaperone FACT and H2B ubiquitination maintain S. pombe genome architecture through genic and subtelomeric functions [RNA-seq]
FACT is recruited to the +1 nucleosome of transcribed genes and spreads in a Chd1-dependent manner
PubMed Full text in PMC Similar studies Analyze with GEO2R
FACT is recruited to the +1 nucleosome of transcribed genes and spreads in a Chd1-dependent manner [MNase-ChIP-Seq]
FACT is recruited to the +1 nucleosome of transcribed genes and spreads in a Chd1-dependent manner [ChIP-exo]
FACT is recruited to the +1 nucleosome of transcribed genes and spreads in a Chd1-dependent manner [ChIP-chip]
Spatial regulation of transcription and histone occupancy by histone chaperones FACT and Spt6
A positive feedback loop links opposing functions of P-TEFb/Cdk9 and histone H2B mono-ubiquitylation to regulate transcript elongation in fission yeast
Histone Recycling by FACT and Spt6 during Transcription Prevents the Scrambling of Histone Modifications
PubMed Similar studies Analyze with GEO2R
Histone Recycling by FACT and Spt6 during Transcription Prevents the Scrambling of Histone Modifications [ChIP-seq]
PubMed Similar studies SRA Run Selector
Histone Recycling by FACT and Spt6 during Transcription Prevents the Scrambling of Histone Modifications [tiling]
ChIP-seq for Spt16 before and after transcription inhibition
ChIP-seq for RNAPII before and after transcription inhibition
FACT activity and histone H3-K56 acetylation promote optimal establishment of chromatin architecture independent of ongoing transcription in Saccharomyces cerevisiae
FACT activity and histone H3-K56 acetylation promote optimal establishment of chromatin architecture independent of ongoing transcription in Saccharomyces cerevisiae [RNA-Seq]
FACT activity and histone H3-K56 acetylation promote optimal establishment of chromatin architecture independent of ongoing transcription in Saccharomyces cerevisiae [MNase-Seq]
Chromatin regulates alternative polyadenylation via the RNA polymerase II elongation rate
PubMed Similar studies
The transcriptional elongation rate regulates alternative polyadenylation in yeast
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