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CTCF-mediated 3D chromatin predetermines the gene expression program in the male germline (ChIP-seq)

GSE244675 Mus musculus Genome binding/occupancy profiling by high throughput sequencing 6 samples Submitted 2024/12/13 Platform GPL17021
Summary
Spermatogenesis is a unidirectional differentiation process to produce haploid sperm. However, it remains largely unknown how the gene expression program is determined to direct a unidirectional differentiation. Here we unveil the high-resolution 3D chromatin architecture of male germ cells and show that CTCF-mediated 3D chromatin predetermines the gene expression program required for spermatogenesis. At the mitosis-to-meiosis transition, the germline-specific Polycomb protein SCML2 resolves chromatin loops specific to mitotic spermatogonia. On autosomes, CTCF-mediated 3D chromatin manifests the structural feature of meiosis-specific super-enhancer (meiotic SE) loci already in undifferentiated spermatogonia. In meiotic spermatocytes, the master transcription factor A-MYB is recruited to these meiotic SE loci to strengthen their 3D contacts to instruct the burst of meiotic gene expression. Further, SCML2 and A-MYB establish unique 3D chromatin of the sex chromosomes in meiotic sex chromosome inactivation. We propose that CTCF-mediated 3D chromatin underlines epigenetic priming to direct unidirectional differentiation, thereby determining the cellular identity of the male germline.
Published in
CTCF-mediated 3D chromatin predetermines the gene expression program in the male germline
Kitamura Y, Takahashi K, Maezawa S et al. · bioRxiv : the preprint server for biology 2023 · PMID 38076840 · doi:10.1101/2023.11.30.569508
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Also filed as BioProject PRJNA1024376 and SRA study SRP464640. Searching any of these in the dataset finder brings you back here.

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