Double knockout of steroidogenic factor 1 (SF-1; NR5A1) and liver receptor homolog 1 (LRH-1; NR5A2) in the mouse ovary results in infertility due to disruption of follicle development and ovulation.

IF 3.1 2区 生物学 Q2 REPRODUCTIVE BIOLOGY
Fanny Morin, Camilla H K Hughes, Vickie Roussel, Nicholas Gevry, Bruce D Murphy
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Abstract

Liver receptor homolog 1 (LRH-1; Nr5a2) and steroidogenic factor 1 (SF-1; Nr5a1) are two closely related orphan nuclear receptors that bind to the same genomic motif. Conditional depletion of either of these receptors in the ovary results in infertility, but through different mechanisms, with SF-1 being critical early in ovarian development and LRH-1 regulating ovulation. We conditionally depleted both LRH-1 and SF-1 from the ovary, using two different models of conditional depletion, generating two lines of double conditional knockout (dko) mice. In one, we used the Amhr2Cre (Amhr2-dko) mouse, where depletion is initiated in the prenatal ovary before the stage of germ cell nest breakdown. In the other, we employed Cyp19a1Cre (Cyp19a1-dko)-mediated depletion, which is initiated following formation of the follicular antrum. Both models were completely anovulatory and infertile, and no ovulation occurred following administration of exogenous gonadotropins. The Amhr2-dko mouse had dramatically reduced follicular populations at every stage of development, as well as disrupted extracellular matrix, characterized by dysregulation of collagen and laminin expression in reproductively mature mice, reduced expression of steroidogenic genes, dysregulated lipid metabolism, and inhibited granulosa cell proliferation. The latter resulted in a phenotype of reduced ovarian size in this model. The Cyp19al dko mouse displayed dysregulation of luteinizing hormone (LH) response and ovulatory mechanisms and increased activation of the activin/inhibin signaling axis, suggesting impaired gonadotropin responsiveness. In summary, both dko models demonstrated a phenotype of complete infertility, confirming the critical importance of both LRH-1 and SF-1 in ovarian function.

双敲除甾体生成因子1 (SF-1);NR5A1)和肝脏受体同源物1 (LRH-1);NR5A2)在小鼠卵巢中的表达会破坏卵泡发育和排卵,从而导致不孕。
肝脏受体同源物1 (LRH-1;Nr5a2)和甾体生成因子1 (SF-1;Nr5a1)是两个密切相关的孤儿核受体,结合到相同的基因组基序。卵巢中任何一种受体的条件性缺失都会导致不孕,但其机制不同,其中SF-1在卵巢发育早期起关键作用,而LRH-1调节排卵。我们从卵巢中有条件地去除LRH-1和SF-1,使用两种不同的条件去除模型,产生了两种双条件敲除(dko)小鼠。首先,我们使用amhr2crre (Amhr2-dko)小鼠,在生殖细胞巢破裂阶段之前,在产前卵巢开始衰竭。另一方面,我们采用Cyp19a1Cre (Cyp19a1-dko)介导的耗竭,这是在卵泡腔形成后开始的。这两种模型完全不排卵和不育,并且在施用外源性促性腺激素后没有排卵。Amhr2-dko小鼠在每个发育阶段的卵泡数量都显著减少,并且细胞外基质被破坏,其特征是在生殖成熟小鼠中胶原蛋白和层粘连蛋白表达失调,类固醇基因表达减少,脂质代谢失调,颗粒细胞增殖受到抑制。后者导致该模型中卵巢大小减小的表型。Cyp19al dko小鼠显示黄体生成素(LH)反应和排卵机制失调,激活素/抑制素信号轴激活增加,提示促性腺激素反应受损。总之,两种dko模型都表现出完全不育的表型,证实了LRH-1和SF-1在卵巢功能中的重要作用。
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来源期刊
Biology of Reproduction
Biology of Reproduction 生物-生殖生物学
CiteScore
6.30
自引率
5.60%
发文量
214
审稿时长
1 months
期刊介绍: Biology of Reproduction (BOR) is the official journal of the Society for the Study of Reproduction and publishes original research on a broad range of topics in the field of reproductive biology, as well as reviews on topics of current importance or controversy. BOR is consistently one of the most highly cited journals publishing original research in the field of reproductive biology.
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