<HashMap><database>biostudies-arrayexpress</database><scores/><additional><submitter>Wayo Matsushima</submitter><organism>Mus musculus</organism><full_dataset_link>https://www.ebi.ac.uk/biostudies/studies/E-MTAB-16752</full_dataset_link><description>To determine the effect of ZSCAN10 on genome-wide nucleosome occupancy patterns, mouse ES cells (mESCs) carrying Zscan10 gene endogenously tagged with 2xHA and an FKBP12(F36V) degron were treated with dTAGv-1 to induce ZSCAN10 degradation and were assayed with MNase-seq.</description><repository>biostudies-arrayexpress</repository><sample_protocol>Sample Treatment - To induce the degradation of ZSCAN10 endogenously tagged with an FKBP12(F36V), the cells were cultured in medium containing either 500 nM dTAGv-1 (MedChemExpress, HY-145514) or the same volume of DMSO for 24 h prior to harvest.</sample_protocol><sample_protocol>Sample Collection - 1.5 million mESCs were detached by incubating in Accutase for 2 min at 37°C.</sample_protocol><sample_protocol>Growth Protocol - Mouse embryonic stem cells (mESCs) were cultured in 2i+LIF medium composed of DMEM (Thermo Fisher, 10566-024), 10% ES Cell FBS (Thermo Fisher, 16141079), 1X MEM Non-Essential Amino Acids Solution (Thermo Fisher, 11140050), 1 mM sodium pyruvate (Thermo Fisher, 11360-039), 100 µM 2-Mercaptoethanol (Thermo Fisher, 31350-010), 100 U/ml Penicillin-Streptomycin (Thermo Fisher, 15140-122), 100 ng/ml of mouse LIF (Protein Production and Structure Core Facility, EPFL), 3 μM of GSK3 inhibitor (CHIR99021; Tocris Biosciences, 4423), and 2 μM of MEK1/2 inhibitor (PD0325901; Tocris Biosciences, 4192).</sample_protocol><sample_protocol>Library Construction - The purified DNA was size-selected in a 1.5% agarose gel for fragments smaller than 200 bp. The DNA was then purified from gel, and 500 ng of it was used as input for library preparation using NEBNext® Ultra™ II DNA Library Prep Kit for Illumina (New England Biolabs, E7645S).</sample_protocol><sample_protocol>Nucleic Acid Extraction - Nuclear extraction and permeabilisation were performed on the detached cells in ATAC-RSB buffer containing 0.1% NP-40 and 0.1% Tween-20 on ice for 3 min. The nuclei were washed once with the same buffer and digested with 1 U MNase (Worthington Biochemical Corp., LS004798) in 50 µl buffer containing 1 mM CaCl2 at 37°C for 20 min on a thermomixer with 1,000 rpm mixing. The digested DNA was cleaned-up with DNA Clean and Concentrator-5 Kit (Zymo Research, D4014).</sample_protocol><sample_protocol>Sequencing - The libraries were PE75 sequenced on an AVITI (Element Biosciences).</sample_protocol><figure_sub>Organization</figure_sub><figure_sub>MINSEQE Score</figure_sub><figure_sub>Assays and Data</figure_sub><figure_sub>Processed Data</figure_sub><figure_sub>MAGE-TAB Files</figure_sub><data_protocol>Sequence Alignment - Raw read mapping to mm10 was performed with Bowtie2 (version 2.5.1), with the --very-sensitive-local --no-discordant options.</data_protocol><data_protocol>Data Transformation - The alignment BAM files were used as input for the dpos function from DANPOS3 (version 3.0.0) to obtain genome-wide nucleosome occupancy values.</data_protocol><omics_type>Metabolomics</omics_type><omics_type>Unknown</omics_type><omics_type>Transcriptomics</omics_type><omics_type>Genomics</omics_type><omics_type>Proteomics</omics_type><instrument_platform>Element AVITI</instrument_platform><study_type>MNase-seq</study_type><species>Mus musculus</species><pubmed_authors>Wayo Matsushima</pubmed_authors></additional><is_claimable>false</is_claimable><name>MNase-seq of mESCs treated with dTAGv-1 to induce endogenous ZSCAN10 degradation</name><description>To determine the effect of ZSCAN10 on genome-wide nucleosome occupancy patterns, mouse ES cells (mESCs) carrying Zscan10 gene endogenously tagged with 2xHA and an FKBP12(F36V) degron were treated with dTAGv-1 to induce ZSCAN10 degradation and were assayed with MNase-seq.</description><dates><release>2026-09-08T00:00:00Z</release><modification>2026-09-08T10:15:55.33Z</modification><creation>2026-03-12T14:02:08.079Z</creation></dates><accession>E-MTAB-16752</accession><cross_references><ENA>ERP190726</ENA><EFO>EFO_0002944</EFO><EFO>EFO_0004170</EFO><EFO>EFO_0003789</EFO><EFO>EFO_0003751</EFO><EFO>EFO_0004917</EFO><EFO>EFO_0005518</EFO><EFO>EFO_0003816</EFO><EFO>EFO_0004184</EFO><EFO>EFO_0003969</EFO></cross_references></HashMap>