GEO series
SALL1 is an orchestrator of uterine receptivity in part via titration of estrogen signaling [RNA-seq]
GSE306967
Mus musculus
Expression profiling by high throughput sequencing
24 samples
2025/10/10
GPL24247
Summary
SALL1 is a critical regulator of embryonic development across a wide swath of tissues, including vital organs, but little is known about its function in adult tissues. Recent work from our group demonstrates that SALL1 is involved in urogenital development. This study delineates the role of SALL1 transcription factor in the adult reproductive system by demonstrating its requirement at multiple levels of uterine function during the implantation phase of early pregnancy. By generating a conditional knockout mouse model of Sall1 exclusively in female reproductive organs, it is demonstrated herein that SALL1 is independently required both in the uterine luminal epithelium for the attachment of competent blastocysts to the uterine wall, as well as in the uterine stroma for the process of decidualization, another prerequisite for pregnancy success. This robust, multi-tissue-layer requirement for SALL1 across multiple stages in the process of implantation makes it a newly identified regulator of early pregnancy. Herein it isshown that loss of SALL1 causes misexpression of estrogen receptor alpha (ESR1) during the window of implantation, and subsequent pathological deregulation of multiple estrogen response genes whose tight titrations are prerequisites of pregnancy. RNA sequencing of independent knockout uterine compartments at multiple timepoints, and ChIP sequencing to identify direct transcriptional targets, elucidated multiple powerful regulatory pathways downstream of SALL1. Importantly, the use of a selective estrogen receptor antagonist, fulvestrant, at a precise timepoint and dose, offers a partial rescue of embryo attachment to the uterine luminal epithelium, further demonstrating that SALL1 is upstream of ESR1 during implantation phase signaling.
Download
NCBI GEO page ↗
Paper (PMID 41030045) ↗
{# 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
- 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
- GSE341948 Multi-tissue transcriptomic landscape reveals synergistic mechanisms of exercise and GLP-1 agonist in ameliorating diabetic phenotypes in db/db mice 12 samples
- GSE304862 Semaglutide and exercise synergy in obesity: preserving muscle mass and uncovering organ crosstalk 209 samples
- GSE337190 CAR-NKT cells induce low cytokine release syndrome by targeting hyperinflammatory macrophages with mitigation from GM-SCF inhibition. 24 samples
- GSE306116 Caspase-3 Control of RNA Splicing and Mitochondrial Dynamics in Microglia during Parkinson’s Disease [RNA-Seq] 12 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.