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Foxa2 对于小鼠子宫内膜腺的发育和生育能力是必需的。

Foxa2 is essential for mouse endometrial gland development and fertility.

机构信息

Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

Biol Reprod. 2010 Sep;83(3):396-403. doi: 10.1095/biolreprod.109.083154. Epub 2010 May 19.

Abstract

During embryonic development, Foxa2 is required for the formation of the node and notochord, and ablation of this gene results in defects in gastrulation, neural tube patterning, and gut morphogenesis. Foxa2 has been shown to be expressed specifically in the glandular epithelium of the murine uterus. To study the uterine function of Foxa2, this gene was conditionally ablated in the mouse uterus by crossing mice with floxed Foxa2 alleles, Foxa2(loxP/loxP), with the Pgr(cre) mouse model. Pgr(cre/+) Foxa2(loxP/loxP) mice showed significantly reduced fertility. Analysis of the uterus on Day 5.5 of pregnancy showed disrupted blastocyst implantation. Pgr(cre/+) Foxa2(loxP/loxP) mice also showed a severe impairment of the uterus to respond to the artificial induction of the decidual response. Morphological examination of the uteri of these mice showed a severe reduction in the number of endometrial glands. The loss of endometrial glands resulted in the reduction of leukemia inhibitory factor (Lif) expression. The lack of a decidual response could be partially rescued by an intrauterine injection of LIF before the initiation of the decidual response. This analysis demonstrates that Foxa2 regulates endometrial gland development and that mice with a loss of endometrial glands cannot support implantation in part due to the loss of LIF, which is a requisite for fertility in the mouse.

摘要

在胚胎发育过程中,Foxa2 对于节点和脊索的形成是必需的,该基因的缺失会导致原肠胚形成、神经管模式形成和肠道形态发生的缺陷。Foxa2 已被证明在小鼠子宫的腺上皮中特异性表达。为了研究 Foxa2 的子宫功能,通过将 Foxa2 基因的 floxed 等位基因(Foxa2[loxP/loxP])的小鼠与 Pgr(cre)小鼠模型杂交,在小鼠子宫中条件性缺失了该基因。Pgr(cre/+)Foxa2(loxP/loxP)小鼠的生育能力显著降低。对妊娠第 5.5 天子宫的分析显示,囊胚着床受到干扰。Pgr(cre/+)Foxa2(loxP/loxP)小鼠对人工诱导蜕膜反应的反应也严重受损。对这些小鼠子宫的形态学检查显示,子宫内膜腺的数量严重减少。子宫内膜腺的丧失导致白血病抑制因子(Lif)的表达减少。在蜕膜反应开始前,通过宫内注射 Lif 可以部分挽救蜕膜反应的缺失。这项分析表明,Foxa2 调节子宫内膜腺的发育,而失去子宫内膜腺的小鼠不能支持着床,部分原因是缺乏 Lif,这是小鼠生育所必需的。

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