Department of Histology and Embryology, College of Veterinary Medicine, South China Agricultural University, Guangzhou, Guangdong, China.
Department of Obstetrics, Gynecology and Reproductive Biology, Michigan State University, Grand Rapids, MI, USA.
Biol Reprod. 2021 Mar 11;104(3):539-547. doi: 10.1093/biolre/ioaa222.
The endometrium undergoes a pregnancy-delivery-repair cycle multiple times during the reproductive lifespan in females. Decidualization is one of the critical events for the success of this essential process. We have previously reported that Notch1 is essential for artificial decidualization in mice. However, in a natural pregnancy, the deletion of Notch1 (PgrCre/+Notch1f/f, or Notch1d/d) only affects female fertility in the first 30 days of a 6-month fertility test, but not the later stages. In the present study, we undertook a closer evaluation at the first pregnancy of these mice to attempt to understand this puzzling phenomenon. We observed a large number of pregnancy losses in Notch1d/d mice in their first pregnancy, which led to the subfertility observed in the first 30 days of the fertility test. We then demonstrated that the initial pregnancy loss is a consequence of impaired decidualization. Furthermore, we identified a group of genes that contribute to Notch1 regulated decidualization in a natural pregnancy. Gene ontogeny analysis showed that these differentially expressed genes in the natural pregnancy are involved in cell-cell and cell-matrix interactions, different from genes that have been previously identified from the artificial decidualization model, which contribute to cell proliferation and apoptosis. In summary, we determined that Notch1 is essential for normal decidualization in the mouse uterus only in the first pregnancy but not in subsequent ones.
在女性的生殖寿命中,子宫内膜经历多次怀孕-分娩-修复周期。蜕膜化是这一重要过程成功的关键事件之一。我们之前曾报道过 Notch1 对于小鼠的人工蜕膜化是必不可少的。然而,在自然妊娠中,Notch1 的缺失(PgrCre/+ Notch1f/f,或 Notch1d/d)仅在前 30 天的 6 个月生育测试中影响雌性生育能力,但不影响后期阶段。在本研究中,我们对这些小鼠的第一次妊娠进行了更仔细的评估,试图理解这一令人困惑的现象。我们观察到 Notch1d/d 小鼠在第一次妊娠中有大量妊娠丢失,这导致了在生育测试的前 30 天观察到的生育力下降。然后我们证明初始妊娠丢失是蜕膜化受损的结果。此外,我们鉴定了一组基因,这些基因在自然妊娠中有助于 Notch1 调节的蜕膜化。基因本体分析表明,这些在自然妊娠中差异表达的基因参与细胞-细胞和细胞-基质相互作用,与之前从人工蜕膜化模型中鉴定的基因不同,后者有助于细胞增殖和凋亡。总之,我们确定 Notch1 对于小鼠子宫中正常的蜕膜化在第一次妊娠中是必不可少的,但在随后的妊娠中则不是。