GEO series
Specification of the interstitial cell lineage in the fetal mouse ovary requires balanced Notch signaling
GSE334023
Mus musculus
Expression profiling by high throughput sequencing
13 samples
2026/06/02
GPL24247GPL19057
Summary
The ovary contains two major somatic lineages, granulosa cells and interstitial cells, that arise from progenitors within the coelomic epithelium. However, how these two lineages diverge during ovarian development remains unclear. By analyzing joint single-nucleus transcriptomic and chromatin accessibility profiles of murine ovarian cells at the onset of ovary formation, we identified two somatic progenitor populations from the coelomic epithelium distinguished by expression of the nuclear receptors Nr5a1 and Nr2f2. Based on their transcriptomic trajectories, the Nr5a1+ epithelial cells preferentially transitioned toward the granulosa lineage whereas the Nr2f2+ epithelial cells differentiated into mesenchymal populations. This lineage relationship was supported by Nr2f2 lineage tracing experiments that fetal Nr2f2+ progenitors contribute to ovarian interstitial cells postnatally. To define the molecular features underlying this divergence, we performed differential gene expression and chromatin accessibility analyses and found that Nr2f2+ epithelial cells, but not Nr5a1+ cells, were enriched for Notch pathway components and Notch effector motifs. Consistently, lineage tracing of Notch-responsive cells marked Nr2f2+ interstitial cells in postnatal ovaries, whereas ectopic Notch activation in Nr5a1+ cells promoted expansion of the interstitial population accompanied by reduced granulosa cells. By integrating motif analysis with accessible chromatin-gene linkage, we also identified downstream targets regulated by Notch effectors in Nr2f2+ cells, which showed concordant changes upon ectopic Notch activation. These findings demonstrate that somatic cell fate is established early during ovarian development, with active Notch signaling specifying the interstitial lineage and a balanced Notch activity required for proper somatic lineage establishment.
Download
NCBI GEO page ↗
{# Names what the click gives you. "Open in finder" meant nothing to a
visitor who arrived from a search engine and has never seen the tool. #}
Find more
mouse RNA-seq datasets →
Similar datasets
- GSE292862 Modelling mouse embryogenesis from chemically induced totipotent stem cells 22 samples
- GSE185862 A taxonomy of transcriptomic cell types across the isocortex and hippocampal formation 95 samples
- GSE304862 Semaglutide and exercise synergy in obesity: preserving muscle mass and uncovering organ crosstalk 209 samples
- GSE293315 MRPGRX2 Antagonist Treatment Prevents Inflammation and Disease in a Mouse Model of Atopic Dermatitis Dataset 2 35 samples
- GSE255837 Dysregulation of the Normal Wound Healing Cascade in Volumetric Muscle Loss Injury 30 samples
- GSE334940 Tissue nanotransfection-mediated induction of neurogenic programs promotes myoprotective responses in denervated skeletal muscle 15 samples
- GSE341948 Multi-tissue transcriptomic landscape reveals synergistic mechanisms of exercise and GLP-1 agonist in ameliorating diabetic phenotypes in db/db mice 12 samples
- GSE325195 Dendritic cell redundancy enables priming of anti-tumor CD4 T cells in pancreatic cancer 30 samples
Share this dataset
Metadata from NCBI GEO, cached and refreshed periodically — the NCBI page above is authoritative. Downloads link straight to NCBI/ENA; nothing is proxied through BioTransfer.