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PRC1 suppresses a female gene regulatory network to ensure testicular differentiation

Authors :
Japan Society for the Promotion of Science
Takeda Science Foundation
Tokyo Biochemical Research Foundation
Daiichi Sankyo Foundation of Life Science
Mochida Memorial Foundation for Medical and Pharmaceutical Research
Sumitomo Foundation for Basic Science Research
Senri Life Science Foundation
Uehara Memorial Foundation
Naito Foundation
Tokyo University of Science
National Institutes of Health (US)
Maezawa, So [0000-0002-9060-2042]
Masashi, Yukawa [0000-0003-1798-2410]
Hasegawa, Kazuteru [0000-0001-5975-6521]
Hu, Mengwen [0000-0002-7480-6432]
Sakashita, Akihiko [0000-0002-3398-8436]
Vidal, Miguel [0000-0003-4374-6761]
Koseki, Haruhiko [0000-0001-8424-5854]
Barski, A. [0000-0002-1861-5316]
DeFalco, Tony 0000-0003-4133-7040]
Namekawa, Satoshi H. [0000-0002-1052-943X]
Maezawa, So
Masashi, Yukawa
Hasegawa, Kazuteru
Sugiyama, Ryo
Iizuka, Mizuho
Hu, Mengwen
Sakashita, Akihiko
Vidal, Miguel
Koseki, Haruhiko
Barski, A.
DeFalco, Tony
Namekawa, Satoshi H.
Japan Society for the Promotion of Science
Takeda Science Foundation
Tokyo Biochemical Research Foundation
Daiichi Sankyo Foundation of Life Science
Mochida Memorial Foundation for Medical and Pharmaceutical Research
Sumitomo Foundation for Basic Science Research
Senri Life Science Foundation
Uehara Memorial Foundation
Naito Foundation
Tokyo University of Science
National Institutes of Health (US)
Maezawa, So [0000-0002-9060-2042]
Masashi, Yukawa [0000-0003-1798-2410]
Hasegawa, Kazuteru [0000-0001-5975-6521]
Hu, Mengwen [0000-0002-7480-6432]
Sakashita, Akihiko [0000-0002-3398-8436]
Vidal, Miguel [0000-0003-4374-6761]
Koseki, Haruhiko [0000-0001-8424-5854]
Barski, A. [0000-0002-1861-5316]
DeFalco, Tony 0000-0003-4133-7040]
Namekawa, Satoshi H. [0000-0002-1052-943X]
Maezawa, So
Masashi, Yukawa
Hasegawa, Kazuteru
Sugiyama, Ryo
Iizuka, Mizuho
Hu, Mengwen
Sakashita, Akihiko
Vidal, Miguel
Koseki, Haruhiko
Barski, A.
DeFalco, Tony
Namekawa, Satoshi H.
Publication Year :
2023

Abstract

Gonadal sex determination and differentiation are controlled by somatic support cells of testes (Sertoli cells) and ovaries (granulosa cells). In testes, the epigenetic mechanism that maintains chromatin states responsible for suppressing female sexual differentiation remains unclear. Here, we show that Polycomb repressive complex 1 (PRC1) suppresses a female gene regulatory network in postnatal Sertoli cells. We genetically disrupted PRC1 function in embryonic Sertoli cells after sex determination, and we found that PRC1-depleted postnatal Sertoli cells exhibited defective proliferation and cell death, leading to the degeneration of adult testes. In adult Sertoli cells, PRC1 suppressed specific genes required for granulosa cells, thereby inactivating the female gene regulatory network. Chromatin regions associated with female-specific genes were marked by Polycomb-mediated repressive modifications: PRC1-mediated H2AK119ub and PRC2-mediated H3K27me3. Taken together, this study identifies a critical Polycomb-based mechanism that suppresses ovarian differentiation and maintains Sertoli cell fate in adult testes.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1406079159
Document Type :
Electronic Resource