GEO series
DNA methylation-sensitive transcription factors and bivalency orchestrate transposon expression in the absence of DNA methylation [Chromatin landscape across spermatogenesis in wild type and Dnmt3C mutants]
GSE282276
Mus musculus
Genome binding/occupancy profiling by high throughput sequencing
54 samples
2025/08/08
GPL30172
Summary
Silencing of young retrotransposons by Cytosine DNA methylation is essential for spermatogenesis. Failure to methylate retrotransposon promoters leads to their reactivation, meiotic catastrophe and infertility. How transposons become reactivated and why their reactivation follows spermatogenic developmental patterns remains unclear. Here, we show that specific retrotransposon families exhibit distinct expression patterns and chromatin landscapes throughout spermatogenesis when DNA methylation is absent from their promoters. We find a strong correlation between the loss of bivalent H3K4me3-H3K27me3 chromatin modifications and the transition from low retrotransposon expression in spermatogonia to reactivation in meiotic spermatocytes. Using a combination of DNA pulldowns, mass spectrometry and chromatin profiling by CUT&Tag, we identify the DNA methylation-sensitive transcription factor NRF1 as a potential regulator of unmethylated retrotransposons in spermatogenesis. Germline conditional ablation of Nrf1 reduced the upregulation of IAPs in the absence of DNA methylation and rescued the accumulation of IAP-derived Pol protein to wild type germ cell levels. Our study demonstrates that a combination of chromatin modifications and a DNA methylation-sensitive TF regulates young retrotransposons upon loss of repressive DNA methylation in germ cells, suggesting these interactions may be a core strategy used by retrotransposons to proliferate in the germline after evading silencing by DNA methylation.
Download
NCBI GEO page ↗
Paper (PMID 40759778) ↗
{# 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
- 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
- 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
- GSE318435 ATAC-seq of the granulopoiesis lineage from different organs 34 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.