Institute of Human Genetics, University of Freiburg, Germany.
Biol Reprod. 2012 Oct 25;87(4):99. doi: 10.1095/biolreprod.112.101907. Print 2012 Oct.
The sex-determining gene Sry and its target gene Sox9 initiate the early steps of testis development in mammals. Of the related Sox genes Sox8, Sox9, and Sox10, all expressed during Sertoli cell differentiation, only inactivation of Sox9 before the sex determination stage at Embryonic Day 11.5 (E11.5) causes XY sex reversal, while Sox9 inactivation after this stage has no effect on testis cord differentiation. We have previously shown that both Sox9 and Sox8 are essential for maintaining testicular function in post-E14.0 Sertoli cells. To gain insight into the molecular and cellular processes underlying the abnormal development of Sox9 and Sox8 mutant testes, we performed a detailed developmental study of embryonic and neonatal stages. We observe a progressive disruption of the basal lamina surrounding the testis cords that starts at E17.5 and already at E15.5 reduced expression levels of collagen IV, collagen IXa3 and testatin, structural components of the basal lamina, and the extracellular matrix transcriptional regulator Scleraxis. Lineage tracing reveals that mutant Sertoli cells delaminate from testis cords and are present as isolated cells between remaining cords. Also, Sox10 expression is strongly reduced in the absence of Sox9 and/or Sox8. Finally, we document increasing expression of the ovarian marker FOXL2 in mutant cords starting at E15.5, indicating progressive transdifferentiation of mutant Sertoli cells. This study shows that Sox9 and Sox8 maintain integrity of the basal lamina to prevent testis cord disintegration and that both factors actively suppress the ovarian program during early testis development.
性别决定基因 Sry 和其靶基因 Sox9 启动哺乳动物睾丸发育的早期步骤。在相关的 Sox 基因 Sox8、Sox9 和 Sox10 中,只有 Sox9 在胚胎第 11.5 天(E11.5)的性别决定阶段之前失活会导致 XY 性逆转,而在此阶段之后 Sox9 的失活对睾丸索的分化没有影响。我们之前已经表明 Sox9 和 Sox8 对于维持 E14.0 后的支持细胞的睾丸功能都是必需的。为了深入了解 Sox9 和 Sox8 突变睾丸异常发育的分子和细胞过程,我们对胚胎和新生儿阶段进行了详细的发育研究。我们观察到围绕睾丸索的基底层逐渐破坏,从 E17.5 开始,在 E15.5 时已经降低了基底层的结构成分胶原 IV、胶原 IXa3 和 testatin 以及细胞外基质转录调节剂 Scleraxis 的表达水平。谱系追踪显示,突变的支持细胞从睾丸索脱离,并以分离的细胞形式存在于剩余的索之间。此外,Sox10 的表达在 Sox9 和/或 Sox8 缺失时强烈降低。最后,我们记录到从 E15.5 开始,突变索中卵巢标记物 FOXL2 的表达增加,表明突变支持细胞的进行性转分化。这项研究表明 Sox9 和 Sox8 维持基底层的完整性以防止睾丸索解体,并且这两个因素在早期睾丸发育过程中积极抑制卵巢程序。