Sox8 and Sox9 act redundantly for ovarian-to-testicular fate reprogramming in the absence of R-spondin1 in mouse sex reversals

Publication date

2020

Authors

Richardson, Nainoa
Gillot, Isabelle
Gregoire, Elodie P
Youssef, Sameh A
de Rooij, DirkISNI 0000000395706104
de Bruin, AlainISNI 0000000391378158
De Cian, Marie-Cécile
Chaboissier, Marie-Christine

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Abstract

In mammals, testicular differentiation is initiated by transcription factors SRY and SOX9 in XY gonads, and ovarian differentiation involves R-spondin1 (RSPO1) mediated activation of WNT/β-catenin signaling in XX gonads. Accordingly, the absence of RSPO1/Rspo1 in XX humans and mice leads to testicular differentiation and female-to-male sex reversal in a manner that does not requireSry or Sox9 in mice. Here we show that an alternate testis-differentiating factor exists and that this factor is Sox8. Specifically, genetic ablation of Sox8 and Sox9 prevents ovarian-to-testicular reprogramming observed in XX Rspo1 loss-of-function mice. Consequently, Rspo1 Sox8 Sox9 triple mutant gonads developed as atrophied ovaries. Thus, SOX8 alone can compensate for the loss of SOX9 for Sertoli cell differentiation during female-to-male sex reversal.

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Richardson, N, Gillot, I, Gregoire, E P, Youssef, S A, de Rooij, D, de Bruin, A, De Cian, M-C & Chaboissier, M-C 2020, 'Sox8 and Sox9 act redundantly for ovarian-to-testicular fate reprogramming in the absence of R-spondin1 in mouse sex reversals', eLife, vol. 9, e53972. https://doi.org/10.7554/eLife.53972