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R-spondin1通过正向调节Wnt-4信号通路在卵巢发育中发挥重要作用。

R-spondin1 plays an essential role in ovarian development through positively regulating Wnt-4 signaling.

作者信息

Tomizuka Kazuma, Horikoshi Kaori, Kitada Rina, Sugawara Yuriko, Iba Yumi, Kojima Ayako, Yoshitome Akiko, Yamawaki Kengo, Amagai Mikiko, Inoue Ayano, Oshima Takeshi, Kakitani Makoto

机构信息

Discovery Research Laboratories, Research Division, Kirin Pharma Co., Ltd., Takasaki-shi, Gunma, 370-1295, Japan.

出版信息

Hum Mol Genet. 2008 May 1;17(9):1278-91. doi: 10.1093/hmg/ddn036. Epub 2008 Feb 4.

DOI:10.1093/hmg/ddn036
PMID:18250097
Abstract

In mammals, female development has traditionally been considered a default process in the absence of the testis-determining gene, Sry. Recently, it has been documented that the gene for R-spondin1 (RSPO1), a novel class of soluble activator for Wnt/beta-catenin signaling, is mutated in two Italian families with female-to-male (XX) sex reversal. To elucidate the role of Rspo1 as a candidate female-determining gene in a mouse model, we generated Rspo1-null (Rspo1(-/-)) mice and found that Rspo1(-/-) XX mice displayed masculinized features including pseudohermaphroditism in genital ducts, depletion of fetal oocytes, male-specific coelomic vessel formation and ectopic testosterone production in the ovaries. Thus, although Rspo1 is required to fully suppress the male differentiation program and to maintain germ cell survival during the development of XX gonads, the loss of its activity has proved to be insufficient to cause complete XX sex reversal in mice. Interestingly, these partial sex-reversed phenotypes of Rspo1(-/-) XX mice recapitulated those of previously described Wnt-4(-/-) XX mice. In accordance with this finding, the expression of Wnt-4 and its downstream genes was deregulated in early Rspo1(-/-) XX gonads, suggesting that Rspo1 may participate in suppressing the male pathway in the absence of Sry and maintaining oocyte survival through positively regulating Wnt-4 signaling.

摘要

在哺乳动物中,传统观点认为,在缺乏睾丸决定基因Sry的情况下,雌性发育是一个默认过程。最近有文献记载,R-spondin1(RSPO1)基因(一种新型的Wnt/β-连环蛋白信号通路可溶性激活因子)在两个意大利XX性反转(女性向男性)家族中发生了突变。为了在小鼠模型中阐明Rspo1作为候选雌性决定基因的作用,我们培育了Rspo1基因敲除(Rspo1(-/-))小鼠,发现Rspo1(-/-) XX小鼠表现出雄性化特征,包括生殖管道出现假两性畸形、胎儿期卵母细胞耗竭、出现雄性特有的体腔血管以及卵巢中产生异位睾酮。因此,尽管Rspo1是XX性腺发育过程中完全抑制雄性分化程序和维持生殖细胞存活所必需的,但事实证明,其活性丧失不足以导致小鼠出现完全的XX性反转。有趣的是,Rspo1(-/-) XX小鼠的这些部分性反转表型与先前描述的Wnt-4(-/-) XX小鼠的表型相似。与此发现一致的是,在早期Rspo1(-/-) XX性腺中,Wnt-4及其下游基因的表达失调,这表明Rspo1可能在缺乏Sry时参与抑制雄性发育途径,并通过正向调节Wnt-4信号通路维持卵母细胞存活。

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R-spondin1 plays an essential role in ovarian development through positively regulating Wnt-4 signaling.R-spondin1通过正向调节Wnt-4信号通路在卵巢发育中发挥重要作用。
Hum Mol Genet. 2008 May 1;17(9):1278-91. doi: 10.1093/hmg/ddn036. Epub 2008 Feb 4.
2
Activation of beta-catenin signaling by Rspo1 controls differentiation of the mammalian ovary.Rspo1对β-连环蛋白信号通路的激活控制着哺乳动物卵巢的分化。
Hum Mol Genet. 2008 May 1;17(9):1264-77. doi: 10.1093/hmg/ddn016. Epub 2008 Feb 4.
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Loss of R-spondin1 and Foxl2 amplifies female-to-male sex reversal in XX mice.缺失 R-spondin1 和 Foxl2 会增强 XX 型雌性小鼠的雄性逆转。
Sex Dev. 2011;5(6):304-17. doi: 10.1159/000334517. Epub 2011 Nov 22.
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Genetics of ovarian differentiation: Rspo1, a major player.卵巢分化的遗传学:Rspo1,一个主要参与者。
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WNT4 and RSPO1 together are required for cell proliferation in the early mouse gonad.WNT4 和 RSPO1 共同作用于早期小鼠性腺中的细胞增殖。
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and act redundantly for ovarian-to-testicular fate reprogramming in the absence of in mouse sex reversals.并且在小鼠性别反转中, 在卵巢到睾丸命运重编程中发挥冗余作用。
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