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Organizing biological data
Epigenome mapping in quiescent cells reveals a key role for H3K4me3 in regulation of RNA polymerase II activity
Schizosaccharomyces pombe isolate:I-540
Schizosaccharomyces pombe isolate:I-540 Genome sequencing and assembly
SUMO chains fine-tune DNA replication of repetitive sequences by restricting the access of recombination factors
Schizosaccharomyces pombe 972h-
RNA-DNA hybrids on protein coding genes are stabilized by loss of RNase H and are associated with DNA damages during S-phase in fission yeast
A comprehensive Schizosaccharomyces pombe atlas of physical transcription factor interactions with proteins and chromatin [RNAseq]
A comprehensive Schizosaccharomyces pombe atlas of physical transcription factor interactions with proteins and chromatin [ChIPseq]
DSIF factor Spt5 coordinates transcription, maturation and exoribonucleolysis of RNA polymerase II transcripts.
Location of polyadenylation sites within 3’ untranslated regions is linked to biological function in yeast
The Greatwall-Endosulfine-PP2A/B55 pathway controls entry into quiescence by promoting translation of Elongator-tuneable transcripts
A replisome-associated parental histone H3-H4 tetramer chaperone required for faithful epigenetic inheritance
Nucleosome remodeler exclusion by histone deacetylation enforces heterochromatic silencing and epigenetic inheritance
Tracking live-cell single-molecule dynamics enables measurements of heterochromatin-associated protein-protein interactions
The Cdc14 phosphatase, Clp1, does not affect genome expression
Schizosaccharomyces pombe
Schizosaccharomyces pombe strain:ATCC 98676 Whole genome sequencing
The HMG-box module in FACT is critical for suppressing epigenetic variegation of heterochromatin in fission yeast
Nitrogen signaling factor changes gene expression and binding of transcription factors [RNA-seq]
Nitrogen signaling factor changes gene expression and binding of transcription factors [ChIP-seq]
Gene expression profiling analysis of fission yeast cells that can grow at high temeperatures
Proximity-dependent biotinylation map of the RNAPII CTD reveals that the primary role of Serine 2 phosphorylation is in the suppression of pervasive antisense transcription and not in RNA 3’ end processing [RNA-seq]
Proximity-dependent biotinylation map of the RNAPII CTD reveals that the primary role of Serine 2 phosphorylation is in the suppression of pervasive antisense transcription and not in RNA 3’ end processing [ChIP-seq]
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