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Massively multiplex single-molecule oligonucleosome footprinting
Amplicon based single molecule footprinting on ES cells and derivatives
Single Molecule Footprinting (SMF) data from Sonmezer et al., 2020. SMF data is obtained by treating isolated nuclei with methyltransferases, where binding of proteins on DNA, e.g. nucleosomes and TFs, leave behind unmethylated cytosines as footprints. Data in this experiment comprises SMF data obta...
ORGANISM(S): Mus musculus 
Bait-capture based single molecule footprinting on ES cells and derivatives
Bait-capture based single molecule footprinting of Sox2 degron mESC line
High-Throughput Single-Molecule R-loop Footprinting Reveals Principles of R-loop Formation
Bait-capture based single molecule footprinting of mouse F1 cell lines
Bait-capture based single molecule footprinting of different mouse cell lines
SAMOSA is a single-molecule oligonucleosome footprinting technology, which can be employed to reveal nucleosome patterns (nucleosome positioning, nucleosome repeat length) at transcription factor binding sites and epigenomic domains.
ORGANISM(S): Homo sapiens unidentified plasmid 
2020-12-02 | GSE162410 | GEO
Bait-capture based single molecule footprinting in 159 DNMT TKO mESCs upon p300 inhibition
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