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WGBS WT J1 ESC at D3 of EpiLC differentiation
Transcriptomic Analysis of Naïve mESC, Primed mESC and EpiLC
Zbtb2 mutant mouse embryonic stem cells are defective in exiting the pluripotent state. To determine the transcriptional changes underlying this phenotype we performed RNA-seq of wildtype and Zbtb2 mutant cells; in the naïve pluripotent state in 2iLIF, and after 24h and 48h of exposure to SerumLIF a...
ORGANISM(S): Mus musculus 
We investigate the dynamic of DNA methylation on epiblast differentiation. To this end, we used in vitro Epiblast-like cell (EpiLC) differentiation on WT murine ESCs during 3 days. We next performed bisulfite conversion and whole-genome sequecing to assess methylation levels.
ORGANISM(S): Mus musculus 
2023-10-09 | GSE214463 | GEO
mRNA transcriptome analyses of the functions of DDX6-mediated pathways during EpiLC induction
Pluripotency is a transient feature during early embryonic development, which enables the epiblast cells to generate all the somatic lineages of the organism. Studies using mouse embryo and embryonic stem cell (ESC) indicates that embryonic pluripotency is highly dynamic with a spectrum of pluripote...
ORGANISM(S): Mus musculus 
2022-09-14 | GSE196084 | GEO
RNAseq of mll2[Y2602A] mESC and EpiLC
We report the application of genome-wide RNA-sequencing analysis for WT or EsrrbKO mES cells after transition towards EpiLC and subsequent differentiation in early (d3) or late (d5) PGCLC. We find that formative early and formative late gene signatures were significantly reduced in EsrrbKO EpiLC com...
ORGANISM(S): Mus musculus 
2023-01-25 | GSE184136 | GEO
We analyzed the gene expression changes occuring at the first 24h of EpiLC differentiation in embryonic stem cells in which a regulatory region driving expression of Tcf15 has been deleted. These changes has been compared with wild-type embryonic stem cells.
ORGANISM(S): Mus musculus 
2022-09-30 | GSE132003 | GEO
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