Liao Zian, Tang Suni, Nozawa Kaori, Shimada Keisuke, Ikawa Masahito, Monsivais Diana, Matzuk Martin M
Department of Pathology & Immunology, Baylor College of Medicine, Houston, TX, 77030, USA.
Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX, 77030, USA.
bioRxiv. 2024 Feb 7:2023.09.25.559321. doi: 10.1101/2023.09.25.559321.
Endometrial decidualization, a prerequisite for successful pregnancies, relies on transcriptional reprogramming driven by progesterone receptor (PR) and bone morphogenetic protein (BMP)-SMAD1/SMAD5 signaling pathways. Despite their critical roles in early pregnancy, how these pathways intersect in reprogramming the endometrium into a receptive state remains unclear. To define how SMAD1 and/or SMAD5 integrate BMP signaling in the uterus during early pregnancy, we generated two novel transgenic mouse lines with affinity tags inserted into the endogenous SMAD1 and SMAD5 loci ( and By profiling the genome-wide distribution of SMAD1, SMAD5, and PR in the mouse uterus, we demonstrated the unique and shared roles of SMAD1 and SMAD5 during the window of implantation. We also showed the presence of a conserved SMAD1, SMAD5, and PR genomic binding signature in the uterus during early pregnancy. To functionally characterize the translational aspects of our findings, we demonstrated that SMAD1/5 knockdown in human endometrial stromal cells suppressed expressions of canonical decidual markers ( and PR-responsive genes ( Here, our studies provide novel tools to study BMP signaling pathways and highlight the fundamental roles of SMAD1/5 in mediating both BMP signaling pathways and the transcriptional response to progesterone (P4) during early pregnancy.
子宫内膜蜕膜化是成功妊娠的前提条件,它依赖于由孕激素受体(PR)和骨形态发生蛋白(BMP)-SMAD1/SMAD5信号通路驱动的转录重编程。尽管它们在早期妊娠中起着关键作用,但这些通路如何在将子宫内膜重编程为接受状态的过程中相互作用仍不清楚。为了确定SMAD1和/或SMAD5在妊娠早期如何整合子宫中的BMP信号,我们构建了两种新型转基因小鼠品系,将亲和标签插入内源性SMAD1和SMAD5基因座( 和 通过分析小鼠子宫中SMAD1、SMAD5和PR的全基因组分布,我们证明了SMAD1和SMAD5在着床窗口期的独特和共同作用。我们还表明,在妊娠早期子宫中存在保守的SMAD1、SMAD5和PR基因组结合特征。为了从功能上表征我们发现的转化方面,我们证明了在人子宫内膜基质细胞中敲低SMAD1/5会抑制经典蜕膜标志物( 和PR反应基因( 的表达。在这里,我们的研究提供了研究BMP信号通路的新工具,并突出了SMAD1/5在介导早期妊娠期间BMP信号通路和对孕激素(P4)的转录反应中的基本作用。