Obstetrics and Gynecology, University of Cincinnati, Ohio 45267, USA.
Endocrinology. 2012 Nov;153(11):5575-86. doi: 10.1210/en.2012-1528. Epub 2012 Sep 24.
Uterine decidualization, a crucial process for implantation, is a tightly regulated process encompassing proliferation, differentiation, and polyploidization of uterine stromal cells. Hoxa (Homeobox A)-10, a homeobox transcription factor, is highly expressed in decidualizing stromal cells. Targeted gene deletion experiments have demonstrated marked infertility resulting from severely compromised decidualization in Hoxa-10(-/-) mice. However, the underlying mechanism by which Hoxa-10 regulates stromal cell differentiation remains poorly understood. Cyclin D3, a G(1) phase cell-cycle regulatory protein involved in stromal cell proliferation and decidualization, is significantly reduced in Hoxa-10(-/-) mice. The expression of cyclin D3 in the pregnant mouse uterus parallels stromal cell decidualization. Here, we show that adenovirus-driven cyclin D3 replacement in Hoxa-10(-/-) mice improves stromal cell decidualization. To address our question of whether cyclin D3 replacement in Hoxa-10(-/-) mice can improve decidualization, both in vitro and in vivo studies were completed after the addition of cyclin D3 or empty (control) viral vectors. Immunostaining demonstrated increased proliferation and decidualization in both in vitro and in vivo studies, and in situ hybridization confirmed increased expression of decidualization markers in vivo. Placentation was demonstrated as well in vivo in the cyclin D3-replaced animals. However, fertility was not restored in Hoxa-10(-/-) mice after d 10 of pregnancy. Finally, we identified several downstream targets of cyclin D3 during decidualization in vitro via proteomics experiments, and these were confirmed using in situ hybridization in vivo. Collectively, these results demonstrate that cyclin D3 expression influences a host of genes involved in decidualization and can improve decidualization in Hoxa-10(-/-) mice.
子宫蜕膜化是着床的关键过程,是一个严格调控的过程,包括子宫基质细胞的增殖、分化和多倍体化。同源盒 A-10(Hoxa-10)是一种同源盒转录因子,在蜕膜化的基质细胞中高度表达。靶向基因缺失实验表明,Hoxa-10(-/-)小鼠的蜕膜化严重受损,导致明显的不育。然而,Hoxa-10 调节基质细胞分化的潜在机制仍知之甚少。细胞周期蛋白 D3(Cyclin D3)是一种 G1 期细胞周期调控蛋白,参与基质细胞增殖和蜕膜化,在 Hoxa-10(-/-)小鼠中显著减少。怀孕小鼠子宫中 cyclin D3 的表达与基质细胞蜕膜化平行。在这里,我们展示了腺病毒驱动的 cyclin D3 在 Hoxa-10(-/-)小鼠中的替代,改善了基质细胞的蜕膜化。为了解决我们的问题,即在 Hoxa-10(-/-)小鼠中添加 cyclin D3 是否可以改善蜕膜化,无论是在体外还是体内研究,在添加 cyclin D3 或空(对照)病毒载体后都完成了。免疫染色显示在体外和体内研究中均增加了增殖和蜕膜化,原位杂交证实了体内蜕膜化标记物的表达增加。体内还证实了胎盘形成。然而,在怀孕第 10 天的 Hoxa-10(-/-)小鼠中,生育能力没有恢复。最后,我们通过蛋白质组学实验鉴定了体外蜕膜化过程中 cyclin D3 的几个下游靶标,并通过体内原位杂交进行了确认。总之,这些结果表明 cyclin D3 的表达影响了蜕膜化过程中涉及的许多基因,并可以改善 Hoxa-10(-/-)小鼠的蜕膜化。