4.7 Article

Sox30 initiates transcription of haploid genes during late meiosis and spermiogenesis in mouse testes

Journal

DEVELOPMENT
Volume 145, Issue 13, Pages -

Publisher

COMPANY BIOLOGISTS LTD
DOI: 10.1242/dev.164855

Keywords

Sox30; Male germ cell; Spermiogenesis; Gene regulation; Mouse

Funding

  1. Ministry of Science and Technology of the People's Republic of China [2016YFA0500902, 2016YFA0503300]
  2. National Natural Science Foundation of China [31471228, 31771653, 81471502, 31471403, 81771641]
  3. Jiangsu Science and Technology Department [BK20150047]
  4. Natural Science Foundation of Jiangsu Province [BK20140897, 14KJA180005, 15KJA180006]
  5. Innovative and Entrepreneurial Program of Jiangsu Province
  6. Jiangsu Provincial Department of Education [BRA2016386]
  7. Six Talent Peaks Project in Jiangsu Province [YY-019]
  8. Fok Ying Tung Education Foundation [161037]
  9. National Institutes of Health [ES027544, DK111436, CA215591]
  10. American Heart Association [30970064]
  11. Taishan scholar Foundation of Shandong Province

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Transcription factors of the Sox protein family contain a DNA-binding HMG box and are key regulators of progenitor cell fate. Here, we report that expression of Sox30 is restricted to meiotic spermatocytes and postmeiotic haploids. Sox30 mutant males are sterile owing to spermiogenic arrest at the early round spermatid stage. Specifically, in the absence of Sox30, proacrosomic vesicles fail to form a single acrosomal organelle, and spermatids arrest at step 2-3. Although most Sox30 mutant spermatocytes progress through meiosis, accumulation of diplotene spermatocytes indicates a delayed or impaired transition from meiotic to postmeiotic stages. Transcriptome analysis of isolated stage-specific spermatogenic cells reveals that Sox30 controls a core postmeiotic gene expression program that initiates as early as the late meiotic cell stage. ChIP-seq analysis shows that Sox30 binds to specific DNA sequences in mouse testes, and its genomic occupancy correlates positively with expression of many postmeiotic genes including Tnp1, Hils1, Ccdc54 and Tsks. These results define Sox30 as a crucial transcription factor that controls the transition from a late meiotic to a postmeiotic gene expression program and subsequent round spermatid development.

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