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

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Date

2016-06-07

Authors

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

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Elife sciences publications ltd
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Abstract

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.

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MeSH Terms

Mice
Animals
Female
Male
Anorchia
Testis
Sertoli Cells
Ovary
DMRT1 protein
Leydig Cells
Gonads
Seminiferous Tubules
Fertility
Apoptosis

DeCS Terms

Animales
Apoptosis
Células intersticiales del testículo
Células de sertoli
Femenino
Fertilidad
Gónadas
Masculino
Ovario
Proteínas
Testículo
Ratones
Túbulos seminíferos

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Keywords

Autosomal sex reversal, Sry-related gene, Campomelic dysplasia, Mammalian testis, Sertoli-cells, Transcription factors, Male-fertility, Beta-catenin, Iberian mole, Expression

Citation

Barrionuevo FJ, Hurtado A, Kim GJ, Real FM, Bakkali M, Kopp JL, et al. Sox9 and Sox8 protect the adult testis from male-to-female genetic reprogramming and complete degeneration. Elife. 2016 Jun 21;5:e15635.