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1
Opposing effects of retinoic acid and FGF9 on Nanos2 expression and meiotic entry of mouse germ cells.维甲酸和 FGF9 对小鼠生殖细胞 Nanos2 表达和减数分裂进入的拮抗作用。
J Cell Sci. 2010 Mar 15;123(Pt 6):871-80. doi: 10.1242/jcs.057968. Epub 2010 Feb 16.
2
FGF signaling directs a center-to-pole expansion of tubulogenesis in mouse testis differentiation.FGF 信号指导小鼠睾丸分化中从中心到极的管状发生扩张。
Development. 2010 Jan;137(2):303-12. doi: 10.1242/dev.040519.
3
Sox10 gain-of-function causes XX sex reversal in mice: implications for human 22q-linked disorders of sex development.Sox10 获得性功能导致小鼠 XX 性反转:对人类 22q 连锁性别发育障碍的影响。
Hum Mol Genet. 2010 Feb 1;19(3):506-16. doi: 10.1093/hmg/ddp520. Epub 2009 Nov 20.
4
Elucidation of the transcription network governing mammalian sex determination by exploiting strain-specific susceptibility to sex reversal.通过利用品系特异性性反转易感性阐明调控哺乳动物性别决定的转录网络。
Genes Dev. 2009 Nov 1;23(21):2521-36. doi: 10.1101/gad.1835809.
5
The transcription co-factor CITED2 functions during sex determination and early gonad development.转录辅因子CITED2在性别决定和早期性腺发育过程中发挥作用。
Hum Mol Genet. 2009 Aug 15;18(16):2989-3001. doi: 10.1093/hmg/ddp237. Epub 2009 May 20.
6
The PGD2 pathway, independently of FGF9, amplifies SOX9 activity in Sertoli cells during male sexual differentiation.在雄性性别分化过程中,前列腺素D2(PGD2)信号通路独立于成纤维细胞生长因子9(FGF9),增强支持细胞中SOX9的活性。
Development. 2009 Jun;136(11):1813-21. doi: 10.1242/dev.032631.
7
Morphometric analysis of testis cord formation in Sox9-EGFP mice.Sox9-EGFP小鼠睾丸索形成的形态计量学分析。
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8
A critical time window of Sry action in gonadal sex determination in mice.小鼠性腺性别决定中Sry作用的关键时间窗口。
Development. 2009 Jan;136(1):129-38. doi: 10.1242/dev.029587. Epub 2008 Nov 26.
9
Sex determination and SRY: down to a wink and a nudge?性别决定与SRY:就靠眨眼和轻推?
Trends Genet. 2009 Jan;25(1):19-29. doi: 10.1016/j.tig.2008.10.008. Epub 2008 Nov 20.
10
Stabilization of beta-catenin in XY gonads causes male-to-female sex-reversal.XY性腺中β-连环蛋白的稳定会导致雄性向雌性的性反转。
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XX Sox9 转基因小鼠中卵睾的一过性发育。

Transient development of ovotestes in XX Sox9 transgenic mice.

机构信息

INSERM, U636, F-06108 Nice, France.

出版信息

Dev Biol. 2011 Jan 1;349(1):65-77. doi: 10.1016/j.ydbio.2010.10.006. Epub 2010 Oct 19.

DOI:10.1016/j.ydbio.2010.10.006
PMID:20965161
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2993827/
Abstract

The sex of an individual results from the paternal transmission of the SRY gene located on the Y chromosome. In turn, SRY initiates Sox9 expression, a transcription factor required for testicular differentiation. Ectopic activation of SOX9 in XX Wt1:Sox9 transgenic mice induces female-to-male sex reversal in adult mice. Here we show that complete sex reversal is preceded by a transient phase of ovotestis differentiation with XX Wt1:Sox9 transgenic gonads containing a testicular central region and one or both ovarian poles indicating that Wt1:Sox9 is not as efficient as Sry to induce male development. In XX Wt1:Sox9(Tg/+) gonads, transgenic Sox9 is expressed earlier than Sox9 in XY gonads and is able to induce the expression of EGFP, knocked into the 3' UTR of Sox9 indicating that SOX9 is involved in the initiation and maintenance of its own expression. However, the delayed onset of expression of endogenous Sox9-EGFP suggests that this activation requires other factors, whose expression depends on SOX9. In the testicular regions of the XX Wt1:Sox9 ovotestes, proliferation of the XX fetal germ cells is hampered and they differentiate as pro-spermatogonia. This indicates that XX germ cells are not competent to respond to proliferative signals released from a testicular environment. In the ovarian regions, despite the continuous mRNA expression of the WT1:Sox9 transgene, the SOX9 protein does not accumulate suggesting that regulation of this gene in ovarian cells involves post-transcriptional mechanisms. Finally, ovarian cells of the XX Wt1:Sox9 ovotestis undergo apoptosis during late embryogenesis leading to complete female-to-male sex reversal of the transgenic mice at birth.

摘要

个体的性别取决于 Y 染色体上的父系传递的 SRY 基因。反过来,SRY 启动 Sox9 的表达,Sox9 是睾丸分化所必需的转录因子。在 XX Wt1:Sox9 转基因小鼠中异位激活 SOX9 会导致成年小鼠的雌性到雄性性别反转。在这里,我们发现完全的性别反转之前是一个短暂的卵睾分化阶段,XX Wt1:Sox9 转基因性腺包含睾丸中央区域和一个或两个卵巢极,表明 Wt1:Sox9 不如 Sry 有效诱导雄性发育。在 XX Wt1:Sox9(Tg/+) 性腺中,转基因 Sox9 的表达早于 XY 性腺中的 Sox9,并且能够诱导 EGFP 的表达,该基因敲入 Sox9 的 3'UTR 表明 SOX9 参与自身表达的启动和维持。然而,内源性 Sox9-EGFP 的表达延迟表明这种激活需要其他因子,其表达依赖于 SOX9。在 XX Wt1:Sox9 卵睾的睾丸区域,XX 胎儿生殖细胞的增殖受到阻碍,并分化为前精原细胞。这表明 XX 生殖细胞不能对来自睾丸环境的增殖信号做出反应。在卵巢区域,尽管 WT1:Sox9 转基因的 mRNA 持续表达,但 SOX9 蛋白不会积累,这表明卵巢细胞中该基因的调节涉及转录后机制。最后,XX Wt1:Sox9 卵睾的卵巢细胞在胚胎晚期发生凋亡,导致转基因小鼠在出生时完全从雌性到雄性的性别反转。