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RSPO1/β-catenin signaling pathway regulates oogonia differentiation and entry into meiosis in the mouse fetal ovary.RSPO1/β-catenin 信号通路调控小鼠胎卵巢卵原细胞的分化和进入减数分裂。
PLoS One. 2011;6(10):e25641. doi: 10.1371/journal.pone.0025641. Epub 2011 Oct 3.
2
How do they do Wnt they do?: regulation of transcription by the Wnt/β-catenin pathway.他们是怎么做的:Wnt/β-连环蛋白途径对转录的调控。
Acta Physiol (Oxf). 2012 Jan;204(1):74-109. doi: 10.1111/j.1748-1716.2011.02293.x. Epub 2011 May 27.
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WNT signaling and the regulation of ovarian steroidogenesis.WNT信号通路与卵巢甾体激素生成的调节
Front Biosci (Schol Ed). 2011 Jan 1;3(1):276-85. doi: 10.2741/s151.
4
WNT4 is a key regulator of normal postnatal uterine development and progesterone signaling during embryo implantation and decidualization in the mouse.WNT4 是一种关键的调节因子,可调节小鼠正常产后子宫发育和胚胎着床及蜕膜化过程中的孕激素信号。
FASEB J. 2011 Apr;25(4):1176-87. doi: 10.1096/fj.10-175349. Epub 2010 Dec 16.
5
Frizzled 1 and frizzled 2 genes function in palate, ventricular septum and neural tube closure: general implications for tissue fusion processes.卷曲蛋白 1 和卷曲蛋白 2 基因在腭、室间隔和神经管闭合中发挥作用:对组织融合过程的普遍意义。
Development. 2010 Nov;137(21):3707-17. doi: 10.1242/dev.052001.
6
Frizzled1 is a marker of inflammatory macrophages, and its ligand Wnt3a is involved in reprogramming Mycobacterium tuberculosis-infected macrophages.卷曲蛋白 1 是炎症性巨噬细胞的标志物,其配体 Wnt3a 参与了结核分枝杆菌感染的巨噬细胞重编程。
FASEB J. 2010 Nov;24(11):4599-612. doi: 10.1096/fj.10-160994. Epub 2010 Jul 28.
7
Beta-catenin (CTNNB1) promotes preovulatory follicular development but represses LH-mediated ovulation and luteinization.β-连环蛋白(CTNNB1)促进排卵前卵泡发育,但抑制促黄体生成素介导的排卵和黄体化。
Mol Endocrinol. 2010 Aug;24(8):1529-42. doi: 10.1210/me.2010-0141. Epub 2010 Jul 7.
8
WNT4/beta-catenin pathway maintains female germ cell survival by inhibiting activin betaB in the mouse fetal ovary.WNT4/β-catenin 通路通过抑制小鼠胎卵巢中的激活素βB 来维持雌性生殖细胞的存活。
PLoS One. 2010 Apr 29;5(4):e10382. doi: 10.1371/journal.pone.0010382.
9
WNT4 is required for normal ovarian follicle development and female fertility.WNT4 对于正常的卵巢滤泡发育和女性生育能力是必需的。
FASEB J. 2010 Aug;24(8):3010-25. doi: 10.1096/fj.09-145789. Epub 2010 Apr 6.
10
WNT2 regulates DNA synthesis in mouse granulosa cells through beta-catenin.WNT2 通过β-连环蛋白调节小鼠颗粒细胞的 DNA 合成。
Biol Reprod. 2010 May;82(5):865-75. doi: 10.1095/biolreprod.109.080903. Epub 2010 Jan 27.

FZD1 调控卵丘扩展基因,是小鼠正常雌性生育力所必需的。

FZD1 regulates cumulus expansion genes and is required for normal female fertility in mice.

机构信息

Centre de Recherche en Reproduction Animale, Université de Montréal, Saint-Hyacinthe, Québec, Canada.

出版信息

Biol Reprod. 2012 Nov 1;87(5):104. doi: 10.1095/biolreprod.112.102608. Print 2012 Nov.

DOI:10.1095/biolreprod.112.102608
PMID:22954793
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3509776/
Abstract

WNT4 is required for normal ovarian follicle development and female fertility in mice, but how its signal is transduced remains unknown. Fzd1 encodes a WNT receptor whose expression is markedly induced in both mural granulosa cells and cumulus cells during the preovulatory period, in a manner similar to Wnt4. To study the physiological roles of FZD1 in ovarian physiology and to determine whether it serves as receptor for WNT4, Fzd1-null mice were created by gene targeting. Whereas rare Fzd1(-/-) females were sterile because of uterine fibrosis and ovarian tubulostromal hyperplasia, most were subfertile, producing ≈1 fewer pup per litter on average relative to controls. Unlike WNT4-deficient mice, ovaries from Fzd1(-/-) mice had normal weights, numbers of follicles, steroid hormone production, and WNT4 target gene expression levels. Microarray analyses of granulosa cells from periovulatory follicles revealed few genes whose expression was altered in Fzd1(-/-) mice. However, gene expression analyses of cumulus-oocyte complexes (COCs) revealed a blunted response of both oocyte (Zp3, Dppa3, Nlrp5, and Bmp15) and cumulus (Btc, Ptgs2, Sema3a, Ptx3, Il6, Nts, Alcam, and Cspg2) genes to the ovulatory signal, whereas the expression of these genes was not altered in WNT4-deficient COCs from Wnt4(tm1.1Boer/tm1.1Boer);Tg (CYP19A1-cre)1Jri mice. Despite altered gene expression, cumulus expansion appeared normal in Fzd1(-/-) COCs both in vitro and in vivo. Together, these results indicate that Fzd1 is required for normal female fertility and may act in part to regulate oocyte maturation and cumulus cell function, but it is unlikely to function as the sole ovarian WNT4 receptor.

摘要

WNT4 对于小鼠正常的卵泡发育和雌性生育能力是必需的,但它的信号转导方式仍不清楚。Fzd1 编码一种 WNT 受体,其表达在排卵前时期在壁层颗粒细胞和卵丘细胞中显著诱导,方式类似于 Wnt4。为了研究 FZD1 在卵巢生理学中的生理作用,并确定它是否作为 WNT4 的受体,通过基因靶向创建了 Fzd1 缺失的小鼠。虽然罕见的 Fzd1(-/-) 雌性由于子宫纤维化和卵巢小管间质增生而不育,但大多数是不育的,相对于对照组,平均每窝产仔数减少约 1 只。与 WNT4 缺陷型小鼠不同,Fzd1(-/-) 小鼠的卵巢重量、卵泡数量、类固醇激素产生和 WNT4 靶基因表达水平正常。来自排卵前卵泡的颗粒细胞的微阵列分析显示,Fzd1(-/-) 小鼠中很少有基因的表达发生改变。然而,对卵丘 - 卵母细胞复合物(COC)的基因表达分析显示,Fzd1(-/-) COC 中卵母细胞(Zp3、Dppa3、Nlrp5 和 Bmp15)和卵丘细胞(Btc、Ptgs2、Sema3a、Ptx3、Il6、Nts、Alcam 和 Cspg2)的基因对排卵信号的反应减弱,而这些基因的表达在 WNT4 缺陷型 COC 中没有改变从 Wnt4(tm1.1Boer/tm1.1Boer);Tg (CYP19A1-cre)1Jri 小鼠。尽管基因表达发生改变,但 Fzd1(-/-) COC 中的卵丘扩张在体外和体内均正常。这些结果表明,Fzd1 对于正常的雌性生育能力是必需的,并且可能部分作用是调节卵母细胞成熟和卵丘细胞功能,但它不太可能作为唯一的卵巢 WNT4 受体发挥作用。