Su Ren-Wei, Strug Michael R, Jeong Jae-Wook, Miele Lucio, Fazleabas Asgerally T
Department of Obstetrics, Gynecology and Reproductive Biology, Michigan State University, Grand Rapids, MI 49503;
Department of Obstetrics, Gynecology and Reproductive Biology, Michigan State University, Grand Rapids, MI 49503; Department of Women's Health, Spectrum Health System, Grand Rapids, MI 49503;
Proc Natl Acad Sci U S A. 2016 Feb 23;113(8):2300-5. doi: 10.1073/pnas.1520441113. Epub 2016 Feb 8.
In mammalian reproduction, implantation is one of the most critical events. Failure of implantation and the subsequent decidualization contribute to more than 75% of pregnancy losses in women. Our laboratory has previously reported that inhibition of Notch signaling results in impaired decidualization in both women and a transgenic mouse model. In this study, we generated a Notch gain-of-function transgenic mouse by conditionally overexpressing the Notch1 intracellular domain (N1ICD) in the reproductive tract driven by a progesterone receptor (Pgr) -Cre. We show that the overexpression of N1ICD in the uterus results in complete infertility as a consequence of multiple developmental and physiological defects, including the absence of uterine glands and dysregulation of progesterone and estrogen signaling by a Recombination Signal Binding Protein Jκ-dependent signaling mechanism. We further show that the inhibition of progesterone signaling is caused by hypermethylation of its receptor Pgr by Notch1 overexpression through the transcription factor PU.1 and DNA methyltransferase 3b (Dnmt3b). We have generated a mouse model to study the consequence of increased Notch signaling in female reproduction and provide the first evidence, to our knowledge, that Notch signaling can regulate epigenetic modification of the Pgr.
在哺乳动物的生殖过程中,着床是最关键的事件之一。着床失败及随后的蜕膜化导致超过75%的女性妊娠丢失。我们实验室先前报道,Notch信号通路的抑制会导致女性和转基因小鼠模型蜕膜化受损。在本研究中,我们通过在孕激素受体(Pgr)-Cre驱动下在生殖道中条件性过表达Notch1细胞内结构域(N1ICD),构建了一个Notch功能获得性转基因小鼠。我们发现,子宫中N1ICD的过表达导致完全不育,这是多种发育和生理缺陷的结果,包括子宫腺体缺失以及通过重组信号结合蛋白Jκ依赖性信号机制导致的孕激素和雌激素信号失调。我们进一步表明,Notch1过表达通过转录因子PU.1和DNA甲基转移酶3b(Dnmt3b)导致孕激素受体Pgr的高甲基化,从而抑制孕激素信号。我们构建了一个小鼠模型来研究Notch信号增强在雌性生殖中的后果,并据我们所知首次提供了Notch信号可调节Pgr表观遗传修饰的证据。