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Publication : Super-enhancer switching drives a burst in gene expression at the mitosis-to-meiosis transition.

First Author  Maezawa S Year  2020
Journal  Nat Struct Mol Biol Volume  27
Issue  10 Pages  978-988
PubMed ID  32895557 Mgi Jnum  J:299776
Mgi Id  MGI:6490655 Doi  10.1038/s41594-020-0488-3
Citation  Maezawa S, et al. (2020) Super-enhancer switching drives a burst in gene expression at the mitosis-to-meiosis transition. Nat Struct Mol Biol 27(10):978-988
abstractText  Owing to bursts in the expression of thousands of germline-specific genes, the testis has the most diverse and complex transcriptome of all organs. By analyzing the male germline of mice, we demonstrate that the genome-wide reorganization of super-enhancers (SEs) drives bursts in germline gene expression after the mitosis-to-meiosis transition. SE reorganization is regulated by two molecular events: the establishment of meiosis-specific SEs via A-MYB (MYBL1), a key transcription factor for germline genes, and the resolution of SEs in mitotically proliferating cells via SCML2, a germline-specific Polycomb protein required for spermatogenesis-specific gene expression. Before entry into meiosis, meiotic SEs are preprogrammed in mitotic spermatogonia to ensure the unidirectional differentiation of spermatogenesis. We identify key regulatory factors for both mitotic and meiotic enhancers, revealing a molecular logic for the concurrent activation of mitotic enhancers and suppression of meiotic enhancers in the somatic and/or mitotic proliferation phases.
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