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首页> 外文期刊>Developmental biology >Porcupine-dependent Wnt signaling controls stromal proliferation and endometrial gland maintenance through the action of distinct WNTs
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Porcupine-dependent Wnt signaling controls stromal proliferation and endometrial gland maintenance through the action of distinct WNTs

机译:珀瓜嘌呤依赖性Wnt信号传导通过不同WNT的作用控制基质增殖和子宫内膜腺体维护

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摘要

Wnt signaling has been shown to be important in orchestrating proper development of the female reproductive tract. In the uterus, six members of the Wnt family are expressed in the neonatal endometrium and deletion of individual Wnt genes often leads to similar phenotypes, suggesting an interaction of these genes in uterine development and function. Furthermore, Wnts may have complementary functions, which could mask the identification of their individual functional role in single gene deletions. To circumvent this issue, we have generated a deletion of the Porcupine homolog within the female reproductive tract using progesterone receptor-Cre mice (Pgr(cre/+)); preventing Wnt secretion from the producing cells. We show that Porcupine dependent Wnt signaling, unlike previously reported, is dispensable for postnatal gland formation but is required for post-pubertal gland maintenance as well as for stromal cell proliferation. Furthermore, our results demonstrate that WNT7a is sufficient to restore post-pubertal endometrial gland formation. Although WNT5a did not restore gland formation, it rescued stromal cell proliferation; up-regulating several secreted factors including Fgf10 and Ihh. Our results further elucidate the roles of Wnt signaling in uterine development and function as well as provide an ideal system to address individual Wnt functions in the uterus.
机译:WNT信令已被证明是在协调女性生殖道的正确发展方面很重要。在子宫中,WNT家族的六个成员在新生儿子宫内膜中表达,并且缺失个体WNT基因通常导致类似的表型,表明这些基因在子宫发育和功能中的相互作用。此外,WNT可能具有互补功能,其可以在单一基因缺失中掩盖它们的个体功能作用的鉴定。为了规避这个问题,我们使用孕酮受体-Cre小鼠(PGR(CRE / +))生成了雌性生殖道内的豪猪同源物;防止来自生产细胞的Wnt分泌。我们表明,与先前报道不同,孔依赖性WNT信号传导可用于产后腺体形成,但是普紫外谷腺体维护以及基质细胞增殖是必需的。此外,我们的结果表明wnt7a足以恢复呕血子宫内膜腺体形成。虽然Wnt5a没有恢复腺体形成,但它救出了基质细胞增殖; up-consemate几个分泌的因素,包括fgf10和ihh。我们的结果进一步阐明了WNT信号传导在子宫发育和功能中的作用,以及提供理想的系统来解决子宫中的单个WNT功能。

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