Centre de Recherche en Reproduction Animale, Faculté de Médecine Vétérinaire, Université de Montréal, C.P. 5000, St.-Hyacinthe, QC, Canada J2S 7C6.
FASEB J. 2010 Aug;24(8):3010-25. doi: 10.1096/fj.09-145789. Epub 2010 Apr 6.
To study the role of WNT4 in the postnatal ovary, a mouse strain bearing a floxed Wnt4 allele was created and mated to the Amhr2(tm3(cre)Bhr) strain to target deletion of Wnt4 to granulosa cells. Wnt4(flox/-);Amhr2(tm3(cre)Bhr/+) mice had reduced ovary weights and produced smaller litters (P<0.05). Serial follicle counting demonstrated that Wnt4(flox/-);Amhr2(tm3(cre)Bhr/+) mice were born with a normal ovarian reserve and maintained normal numbers of small follicles until puberty but had only 25.2% of the normal number of healthy antral follicles. Some Wnt4(flox/-);Amhr2(tm3(cre)Bhr/+) mice had no antral follicles or corpora lutea and underwent premature follicle depletion. RT-PCR analyses of Wnt4(flox/-);Amhr2(tm3(cre)Bhr/+) granulosa cells and cultured granulosa cells that overexpress WNT4 demonstrated that WNT4 regulates the expression of Star, Cyp11a1, and Cyp19, steroidogenic genes previously identified as downstream targets of the WNT signaling effector CTNNB1. Decreased serum progesterone levels were found in immature, gonadotropin-treated Wnt4(flox/-);Amhr2(tm3(cre)Bhr/+) mice (P<0.05). WNT4- and CTNNB1-overexpressing cultured granulosa cells were analyzed by microarray for alterations in gene expression, which showed that WNT4 regulates additional genes involved in late follicle development via the WNT/CTNNB1 signaling pathway. Together, these data indicate that WNT4 is required for normal antral follicle development and may act by regulating granulosa cell functions including steroidogenesis.
为了研究 WNT4 在产后卵巢中的作用,创建了携带 Wnt4 基因敲除等位基因的小鼠品系,并将其与 Amhr2(tm3(cre)Bhr) 品系交配,以将 Wnt4 靶向缺失到颗粒细胞中。Wnt4(flox/-);Amhr2(tm3(cre)Bhr/+) 小鼠的卵巢重量减轻,产仔量减少(P<0.05)。连续的卵泡计数表明,Wnt4(flox/-);Amhr2(tm3(cre)Bhr/+) 小鼠出生时具有正常的卵巢储备,并在青春期前维持正常数量的小卵泡,但仅有正常数量的健康窦卵泡的 25.2%。一些 Wnt4(flox/-);Amhr2(tm3(cre)Bhr/+) 小鼠没有窦卵泡或黄体,并经历了过早的卵泡耗竭。对 Wnt4(flox/-);Amhr2(tm3(cre)Bhr/+) 颗粒细胞和过表达 WNT4 的培养颗粒细胞的 RT-PCR 分析表明,WNT4 调节 Star、Cyp11a1 和 Cyp19 的表达,这些基因是 WNT 信号效应物 CTNNB1 的下游靶标。在未成熟的、促性腺激素处理的 Wnt4(flox/-);Amhr2(tm3(cre)Bhr/+) 小鼠中发现血清孕激素水平降低(P<0.05)。通过微阵列分析过表达 WNT4 和 CTNNB1 的培养颗粒细胞的基因表达变化,表明 WNT4 通过 WNT/CTNNB1 信号通路调节其他参与晚期卵泡发育的基因。总之,这些数据表明 WNT4 是正常窦卵泡发育所必需的,并且可能通过调节包括类固醇生成在内的颗粒细胞功能起作用。