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子宫内膜基质β-连环蛋白是甾体激素依赖性间充质-上皮细胞相互作用和蜕膜化所必需的。

Endometrial stromal beta-catenin is required for steroid-dependent mesenchymal-epithelial cross talk and decidualization.

机构信息

Vincent Center for Reproductive Biology, Vincent Obstetrics and Gynecology Service, Massachusetts General Hospital/Harvard Medical School, Boston, Massachusetts 02114, USA.

出版信息

Reprod Biol Endocrinol. 2012 Sep 7;10:75. doi: 10.1186/1477-7827-10-75.

Abstract

BACKGROUND

Beta-catenin is part of a protein complex associated with adherens junctions. When allowed to accumulate to sufficient levels in its dephosphorylated form, beta-catenin serves as a transcriptional co-activator associated with a number of signaling pathways, including steroid hormone signaling pathways.

METHODS

To investigate the role of beta-catenin in progesterone (P₄) signaling and female reproductive physiology, conditional ablation of Ctnnb1 from the endometrial mesenchymal (i.e. stromal and myometrial), but not epithelial, compartment was accomplished using the Amhr2-Cre mice. Experiments were conducted to assess the ability of mutant female mice to undergo pregnancy and pseudopregnancy by or through oil-induced decidualization. The ability of uteri from mutant female mice to respond to estrogen (E₂) and P₄ was also determined.

RESULTS

Conditional deletion of Ctnnb1 from the mesenchymal compartment of the uterus resulted in infertility stemming, in part, from complete failure of the uterus to decidualize. E₂-stimulated epithelial cell mitosis and edematization were not altered in mutant uteri indicating that the mesenchyme is capable of responding to E₂. However, exposure of ovariectomized mutant female mice to a combined E₂ and P₄ hormone regimen consistent with early pregnancy revealed that mesenchymal beta-catenin is essential for indirectly opposing E₂-induced epithelial proliferation by P₄ and in some mice resulted in development of endometrial metaplasia. Lastly, beta-catenin is also required for the induced expression of genes that are known to play a fundamental role in decidualization such as Ihh, Ptch1, Gli1 and Muc1

CONCLUSIONS

Three salient points derive from these studies. First, the findings demonstrate a mechanistic linkage between the P₄ and beta-catenin signaling pathways. Second, they highlight an under appreciated role for the mesenchymal compartment in indirectly mediating P₄ signaling to the epithelium, a process that intimately involves mesenchymal beta-catenin. Third, the technical feasibility of deleting genes in the mesenchymal compartment of the uterus in an effort to understand decidualization and post-natal interactions with the overlying epithelium has been demonstrated. It is concluded that beta-catenin plays an integral role in selective P₄-directed epithelial-mesenchymal communication in both the estrous cycling and gravid uterus.

摘要

背景

β-连环蛋白是与黏着连接相关的蛋白复合物的一部分。当它以去磷酸化形式积累到足够水平时,β-连环蛋白作为与许多信号通路(包括甾体激素信号通路)相关的转录共激活因子。

方法

为了研究β-连环蛋白在孕激素(P₄)信号和女性生殖生理学中的作用,使用 Amhr2-Cre 小鼠从子宫内膜的间质(即基质和子宫肌层)而不是上皮细胞中条件性敲除 Ctnnb1。通过油诱导的蜕膜化实验来评估突变雌性小鼠妊娠和假妊娠的能力。还确定了突变雌性小鼠子宫对雌激素(E₂)和 P₄ 的反应能力。

结果

从子宫的间质腔室中条件性敲除 Ctnnb1 导致不孕,部分原因是子宫完全不能蜕膜化。突变子宫中的 E₂ 刺激的上皮细胞有丝分裂和水肿没有改变,这表明间质能够对 E₂ 做出反应。然而,将去卵巢的突变雌性小鼠暴露于与早期妊娠一致的 E₂ 和 P₄ 激素治疗方案中,发现间质β-连环蛋白对于通过 P₄ 间接对抗 E₂ 诱导的上皮细胞增殖是必需的,并且在某些小鼠中导致子宫内膜化生的发展。最后,β-连环蛋白对于诱导表达在蜕膜化中起重要作用的基因的表达也是必需的,如 Ihh、Ptch1、Gli1 和 Muc1。

结论

这些研究得出了三个要点。首先,研究结果表明 P₄ 和 β-连环蛋白信号通路之间存在机制联系。其次,它们突出了间质腔室在间接介导 P₄ 信号传递到上皮细胞中的作用,这一过程涉及到间质β-连环蛋白。第三,已经证明了在子宫间质腔室中删除基因的技术可行性,以了解蜕膜化和产后与上皮细胞的相互作用。研究结论认为,β-连环蛋白在发情周期和妊娠子宫中 P₄ 导向的上皮-间质通讯中发挥着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c53/3462133/5db910dbe9ef/1477-7827-10-75-1.jpg

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