GEO series
Temporal constraints on enhancer usage and enhancer-promoter connectivity shape the regulation of limb gene transcription [ChIP-seq]
GSE262005
Mus musculus
Genome binding/occupancy profiling by high throughput sequencing
22 samples
2024/03/22
GPL21103GPL24247
Summary
The repertoire of enhancers orchestrating gene expression during embryonic development shapes the forms and functions of organs. Within regulatory landscapes, enhancers control their target genes through spatially distinct or overlapping activities. However, the temporal specificity of enhancers repertoires—how their activities change over time to dynamically influence gene expression—is less well characterized. In this study, we introduce the regulatory trajectory framework to monitor how enhancer landscapes govern gene transcription in vivo across extensive developmental periods. This paradigm conceptually involves transcriptional initiation, marking the beginning of gene expression, followed by its maintenance over time, and ultimately decommissioning, leading to gene repression. To track and sort cells undergoing these distinct phases, we devised a transgenic recorder approach at the Shox2 model locus. Through this method, we discovered that cells maintaining Shox2 transcription in early and late limb development relies on distinct, temporally restricted enhancer repertoires. We demonstrate that eliminating early- or late-acting enhancers only transiently affects Shox2 expression indicating that these enhancer repertoires function independently. Additionally, we found that changes in the locus' 3D topology associate with enhancer activities and that a rapid loss of enhancer-promoter contacts occurs during decommissioning. Finally, we show that the decommissioning of the Shox2 locus can be actively driven by Hoxd13, a gene which expression is known to antagonize Shox2. Overall, our work uncovers the dependency of developmental genes on enhancers with temporally restricted activities to generate complex expression patterns over time and shed light on the dynamics of enhancer-promoter interactions.
Download
NCBI GEO page ↗
Paper (PMID 41526337) ↗
{# 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 ChIP / ATAC / CUT&Tag datasets →
Similar datasets
- GSE339012 Mega-Enhancers Compartmentalize Transcriptionally Active Long Genes in the Brain [ChIP-Seq] 22 samples
- GSE328495 Gene expression + ATAC profiling of trisomic hippocampal neurons upon SAHA treatment [ATAC-seq] 16 samples
- GSE249984 Androgen receptor action in mouse granulosa cells in response to LH surge 14 samples
- GSE324864 HP1B and H3K9me3 Regulate Olfactory Receptor Choice and 2 Transcriptional Identity [ChIP-seq] 28 samples
- GSE292285 Depletion of lamin-associated polypeptide 2 alpha leads to chromatin reorganization and redistribution of A-type lamins to open genomic regions [ChIP-seq] 22 samples
- GSE306458 ACVR1-mediated glycolytic reprogramming promotes histone lactylation and neuronal pyroptosis in neuropathic pain {ChIP-seq] 12 samples
- GSE306261 Astrocyte glucocorticoid receptor signaling restricts neuronal plasticity [CUT&RUN] 50 samples
- GSE163008 Loop extrusion by cohesin plays a role in enhancer-activated gene expression early in differentiation (ChIP-seq) 26 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.