Li Quanxi, Kannan Athilakshmi, Wang Wei, Demayo Francesco J, Taylor Robert N, Bagchi Milan K, Bagchi Indrani C
Department of Veterinary Biosciences, University of Illinois at Urbana-Champaign, Urbana, Illinois 61802, USA.
J Biol Chem. 2007 Oct 26;282(43):31725-32. doi: 10.1074/jbc.M704723200. Epub 2007 Aug 21.
A critical role of progesterone (P) during early pregnancy is to induce differentiation of the endometrial stromal cells into specialized decidual cells that support the development of the implanting embryo. The P-induced signaling pathways that participate in the formation and function of the decidual cells remain poorly understood. We report here that the expression of the bone morphogenetic protein 2 (BMP2), a morphogen belonging to the TGFbeta superfamily, is induced downstream of P action in the mouse uterine stroma during decidualization. To determine the function of BMP2 during this differentiation process, we employed a primary culture system in which undifferentiated stromal cells isolated from pregnant mouse uterus undergo decidualization. When recombinant BMP2 was added to these stromal cultures, it markedly advanced the differentiation program. We also found that siRNA-mediated silencing of BMP2 expression in these cells efficiently blocked the differentiation process. Gene expression profiling experiments identified Wnt4 as a downstream target of BMP2 regulation in stromal cells undergoing decidualization. Attenuation of Wnt4 expression by siRNAs greatly reduced stromal differentiation in vitro, indicating that it is a key mediator of BMP2-induced decidualization. We also observed a remarkable induction in the expression of BMP2 in human endometrial stromal cells during decidualization in vitro in response to steroids and cAMP. Addition of BMP2 to these cultures led to a robust enhancement of Wnt4 expression and stimulated the differentiation process. Collectively, our studies uncovered a unique conserved pathway involving BMP2 and Wnt4 that mediates P-induced stromal decidualization in the mouse and the human.
孕酮(P)在妊娠早期的一个关键作用是诱导子宫内膜基质细胞分化为特殊的蜕膜细胞,以支持着床胚胎的发育。然而,参与蜕膜细胞形成和功能的P诱导信号通路仍知之甚少。我们在此报告,骨形态发生蛋白2(BMP2)是一种属于TGFβ超家族的形态发生素,在小鼠子宫基质蜕膜化过程中,其表达在P作用的下游被诱导。为了确定BMP2在此分化过程中的功能,我们采用了一种原代培养系统,从怀孕小鼠子宫中分离出未分化的基质细胞,使其发生蜕膜化。当将重组BMP2添加到这些基质培养物中时,它显著推进了分化程序。我们还发现,siRNA介导的这些细胞中BMP2表达的沉默有效地阻断了分化过程。基因表达谱实验确定Wnt4是蜕膜化基质细胞中BMP2调控的下游靶点。siRNAs介导的Wnt4表达减弱极大地降低了体外基质分化,表明它是BMP2诱导蜕膜化的关键介质。我们还观察到,在体外类固醇和cAMP刺激下,人子宫内膜基质细胞在蜕膜化过程中BMP2的表达显著诱导。将BMP2添加到这些培养物中导致Wnt4表达的强烈增强,并刺激了分化过程。总之,我们的研究发现了一条独特的保守途径,涉及BMP2和Wnt4,介导小鼠和人类中P诱导的基质蜕膜化。