Pan Haiyan, Zhu Liyin, Deng Yan, Pollard Jeffrey W
Department of Developmental and Molecular Biology and Obstetrics and Gynecology and Women's Health, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, New York 10461, USA.
Endocrinology. 2006 Oct;147(10):4904-16. doi: 10.1210/en.2006-0140. Epub 2006 Jun 22.
In mice, the uterus becomes transiently receptive to the hatched blastocyst on the day of implantation to allow its attachment to the luminal epithelium and subsequent invasion into the uterus. This uterine preparation for implantation is regulated by estradiol-17beta and progesterone, acting through their transcription factor receptors. Using ovariectomized mice treated with physiological regimens of these hormones, combined with methods to isolate RNA specifically from the uterine epithelium followed by transcriptome analysis on cDNA microarrays, 222 genes whose transcript abundance was specifically increased by estradiol-17beta and progesterone treatment were identified. Gene ontology analysis revealed an emphasis on genes involved with immune responses, extracellular matrix metabolism, and cell-to-cell communication. In situ hybridization to uterine sections isolated through the first 6 d of pregnancy identified novel sets of genes such as Bach, Myd88, Cd14, Isg20, and Lrp2 whose expression was restricted to the uterine epithelium during the implantation window. Particularly notable was the expression of the mRNA for members of the signaling pathway from the Toll-like receptors to its downstream targets such as Irg-1. The identification of these genes showing a cell type hormonally regulated pattern of expression in the uterus suggests novel functions for them during implantation.
在小鼠中,子宫在着床日会短暂地接受孵化的囊胚,以使其附着于腔上皮并随后侵入子宫。这种子宫着床准备过程由雌二醇 - 17β和孕酮通过其转录因子受体进行调节。利用接受这些激素生理方案处理的去卵巢小鼠,结合从子宫上皮特异性分离RNA的方法,随后对cDNA微阵列进行转录组分析,鉴定出222个基因,其转录丰度在雌二醇 - 17β和孕酮处理后特异性增加。基因本体分析表明,这些基因主要涉及免疫反应、细胞外基质代谢和细胞间通讯。对妊娠前6天分离的子宫切片进行原位杂交,鉴定出一组新的基因,如Bach、Myd88、Cd14、Isg20和Lrp2,其表达在着床窗口期局限于子宫上皮。特别值得注意的是从Toll样受体到其下游靶点(如Irg - 1)的信号通路成员的mRNA表达。这些在子宫中呈现细胞类型激素调节表达模式的基因的鉴定,提示了它们在着床过程中的新功能。