Sox9 and Sox8 protect the adult testis from male-to-female genetic reprogramming and complete degeneration

Sox9 и Sox8 защищают семенники взрослых животных от генетического перепрограммирования по типу «самец—самка» и полной дегенерации
Francisco J. Barrionuevo, Alicia Hurtado, Gwang-Jin Kim, Francisca M. Real, Mohammed Bakkali, Janel L. Kopp, Maike Sander, Gerd Scherer, Miguel Burgos, Rafael Jiménez
2016-06-21

Dmrt1 expressionSertoli-to-granulosa transdifferentiationSox9/Sox8adult testis maintenancegenetic sex reprogramming
The new concept of mammalian sex maintenance establishes that particular key genes must remain active in the differentiated gonads to avoid genetic sex reprogramming, as described in adult ovaries after Foxl2 ablation. Dmrt1 plays a similar role in postnatal testes, but the mechanism of adult testis maintenance remains mostly unknown. Sox9 and Sox8 are required for postnatal male fertility, but their role in the adult testis has not been investigated. Here we show that after ablation of Sox9 in Sertoli cells of adult, fertile Sox8(-/-) mice, testis-to-ovary genetic reprogramming occurs and Sertoli cells transdifferentiate into granulosa-like cells. The process of testis regression culminates in complete degeneration of the seminiferous tubules, which become acellular, empty spaces among the extant Leydig cells. DMRT1 protein only remains in non-mutant cells, showing that SOX9/8 maintain Dmrt1 expression in the adult testis. Also, Sox9/8 warrant testis integrity by controlling the expression of structural proteins and protecting Sertoli cells from early apoptosis. Concluding, this study shows that, in addition to its crucial role in testis development, Sox9, together with Sox8 and coordinately with Dmrt1, also controls adult testis maintenance.
1
Combined ablation of Sox9 in Sertoli cells and Sox8 loss in adult fertile mice triggers testis-to-ovary genetic reprogramming.
2
SOX9 and SOX8 maintain Dmrt1 expression in adult testes, with DMRT1 protein persisting only in non-mutant cells.
3
SOX9/8 preserve testis integrity by regulating structural proteins and protecting Sertoli cells from premature apoptosis.
4
Sertoli cells transdifferentiate into granulosa-like cells following Sox9/8 disruption in the adult testis.
5
Testis regression culminates in complete degeneration of seminiferous tubules, leaving acellular spaces among surviving Leydig cells.

adult mouse testes, specifically Sertoli cells in Sox8-null mice after Sox9 ablation

Sox9/Sox8- and Dmrt1-dependent maintenance of testis identity and integrity, including prevention of male-to-female reprogramming, Sertoli-cell transdifferentiation, apoptosis, and seminiferous-tubule degeneration

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2016-06-21
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Francisco J. Barrionuevo
Alicia Hurtado
Gwang-Jin Kim
Francisca M. Real
Mohammed Bakkali
Janel L. Kopp
Maike Sander
Gerd Scherer
Miguel Burgos
Rafael Jiménez
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