This SuperSeries is composed of the SubSeries listed below.
Overall design: Refer to individual Series
| Accession | PRJNA291588; GEO: GSE71593 |
| Type | Umbrella project |
| Publications | Walter M et al., "An epigenetic switch ensures transposon repression upon dynamic loss of DNA methylation in embryonic stem cells.", Elife, 2016 Jan 27;5 |
| Submission | Registration date: 31-Jul-2015 Institut Curie |
| Relevance | Superseries |
Project Data:
| Resource Name | Number of Links |
|---|
| Sequence data |
| SRA Experiments | 23 |
| Publications |
| PubMed | 1 |
| PMC | 1 |
| Other datasets |
| BioSample | 23 |
| GEO DataSets | 4 |
An epigenetic switch ensures transposon repression upon acute loss of DNA methylation in ES cells encompasses the following 3 sub-projects:
| Project Type | Number of Projects |
| Epigenomics | 2 |
BioProject accession | Organism | Title |
|---|
| PRJNA291590 | Mus musculus | An epigenetic switch ensures transposon repression upon acute loss of DNA methylation in ES cells (WGBS) (Institut Curie) | | PRJNA291571 | Mus musculus | An epigenetic switch ensures transposon repression upon acute loss of DNA methylation in ES cells (ChIP-Seq) (Institut Curie) |
|
| Transcriptome or Gene expression | 1 |
BioProject accession | Organism | Title |
|---|
| PRJNA291591 | Mus musculus | An epigenetic switch ensures transposon repression upon acute loss of DNA methylation in ES cells (RNA-Seq) (Institut Curie) |
|