Li Bo, Yan Ya-Ping, He Yu-Ying, Liang Chen, Li Meng-Yuan, Wang Ying, Yang Zeng-Ming
Key Laboratory of Animal Genetics, Breeding and Reproduction in the Plateau Mountain Region, College of Animal Science, Guizhou University, Guiyang 550025, China.
College of Veterinary Medicine, South China Agricultural University, Guangzhou, 510642, China.
Sci Signal. 2023 Feb 28;16(774):eadd0645. doi: 10.1126/scisignal.add0645.
The establishment of pregnancy depends on interactions between the epithelial and stromal cells of the endometrium that drive the decidual reaction that remodels the stroma and enables embryo implantation. Decidualization in mice also depends on ovarian hormones and the presence of a blastocyst. Hedgehog signaling is transduced by primary cilia in many tissues and is involved in epithelial-stromal cross-talk during decidualization. We found that primary cilia on mouse uterine stromal cells increased in number and length during early pregnancy and were required for decidualization. In vitro and in vivo, progesterone promoted stromal ciliogenesis and the production of Indian hedgehog (IHH) in the epithelium and Sonic hedgehog (SHH) in the stroma. Blastocyst-derived TNF-α also induced epithelial IHH, which stimulated the production of SHH in the stroma through a mechanism that may involve the release of arachidonic acid from epithelial cells. In the stroma, SHH activated canonical Hedgehog signaling through primary cilia and promoted decidualization through a mechanism that depended on interleukin-11 (IL-11) and primary cilia. Our findings identify a primary cilia-dependent network that controls endometrial decidualization and suggest primary cilia as a candidate therapeutic target for endometrial diseases.
妊娠的建立依赖于子宫内膜上皮细胞和基质细胞之间的相互作用,这种相互作用驱动蜕膜反应,重塑基质并使胚胎着床。小鼠的蜕膜化也依赖于卵巢激素和囊胚的存在。刺猬信号通路在许多组织中由初级纤毛转导,并参与蜕膜化过程中的上皮-基质相互作用。我们发现,小鼠子宫基质细胞上的初级纤毛在妊娠早期数量和长度增加,并且是蜕膜化所必需的。在体外和体内,孕酮促进基质细胞纤毛生成以及上皮细胞中印度刺猬因子(IHH)和基质细胞中 Sonic 刺猬因子(SHH)的产生。囊胚来源的肿瘤坏死因子-α 也诱导上皮细胞产生 IHH,后者通过一种可能涉及上皮细胞释放花生四烯酸的机制刺激基质细胞产生 SHH。在基质细胞中,SHH 通过初级纤毛激活经典的刺猬信号通路,并通过一种依赖于白细胞介素-11(IL-11)和初级纤毛的机制促进蜕膜化。我们的研究结果确定了一个控制子宫内膜蜕膜化的初级纤毛依赖性网络,并提示初级纤毛作为子宫内膜疾病的候选治疗靶点。