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CTCF-mediated 3D chromatin predetermines the gene expression program in the male germline.


ABSTRACT: Spermatogenesis is a unidirectional differentiation process that generates haploid sperm, but how the gene expression program that directs this process is established is largely unknown. Here we determine the high-resolution 3D chromatin architecture of male germ cells during spermatogenesis and show that CTCF-mediated 3D chromatin predetermines the gene expression program required for spermatogenesis. In undifferentiated spermatogonia, CTCF-mediated chromatin contacts on autosomes pre-establish meiosis-specific super-enhancers (SE). These meiotic SE recruit the master transcription factor A-MYB in meiotic spermatocytes, which strengthens their 3D contacts and instructs a burst of meiotic gene expression. We also find that at the mitosis-to-meiosis transition, the germline-specific Polycomb protein SCML2 resolves chromatin loops that are specific to mitotic spermatogonia. Moreover, SCML2 and A-MYB establish the unique 3D chromatin organization of sex chromosomes during meiotic sex chromosome inactivation. We propose that CTCF-mediated 3D chromatin organization enforces epigenetic priming that directs unidirectional differentiation, thereby determining the cellular identity of the male germline.

SUBMITTER: Kitamura Y 

PROVIDER: S-EPMC10705413 | biostudies-literature | 2023 Dec

REPOSITORIES: biostudies-literature

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CTCF-mediated 3D chromatin predetermines the gene expression program in the male germline.

Kitamura Yuka Y   Takahashi Kazuki K   Maezawa So S   Munakata Yasuhisa Y   Sakashita Akihiko A   Kaplan Noam N   Namekawa Satoshi H SH  

bioRxiv : the preprint server for biology 20231202


Spermatogenesis is a unidirectional differentiation process that generates haploid sperm, but how the gene expression program that directs this process is established is largely unknown. Here we determine the high-resolution 3D chromatin architecture of male germ cells during spermatogenesis and show that CTCF-mediated 3D chromatin predetermines the gene expression program required for spermatogenesis. In undifferentiated spermatogonia, CTCF-mediated chromatin contacts on autosomes pre-establish  ...[more]

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