Department of Molecular & Cellular Biology, Baylor College of Medicine, One Baylor Plaza, Houston, Texas, USA.
Department of Obstetrics & Gynecology, Baylor College of Medicine, One Baylor Plaza, Houston, Texas, USA.
Biol Reprod. 2018 Jan 1;98(1):15-27. doi: 10.1093/biolre/iox161.
Infertility and early embryo miscarriage is linked to inadequate endometrial decidualization. Although transcriptional reprogramming is known to drive decidualization in response to progesterone, the key signaling effectors that directly mediate this hormone response are not fully known. This knowledge gap is clinically significant because identifying the early signals that directly mediate progesterone-driven decidualization will address some of the current limitations in diagnosing and therapeutically treating patients at most risk for early pregnancy loss. We recently revealed that the promyelocytic leukemia zinc finger (PLZF) is a direct target of the progesterone receptor and is essential for decidualization of human endometrial stromal cells (hESCs). The purpose of this current work was to identify the genome-wide transcriptional program that is controlled by PLZF during hESC decidualization using an established in vitro hESC culture model, siRNA-mediated knockdown methods, and RNA-sequencing technology followed by bioinformatic analysis and validation. We discovered that PLZF is critical in the regulation of genes that are involved in cellular processes that are essential for the archetypal morphological and functional changes that occur when hESCs transform into epithelioid decidual cells such as proliferation and cell motility. We predict that the transcriptome datasets identified in this study will not only contribute to a broader understanding of PLZF-dependent endometrial decidualization at the molecular level but may advance the development of more effective molecular diagnostics and therapeutics for the clinical management of female infertility and subfertility that is based on a dysfunctional endometrium.
不孕和早期胚胎流产与子宫内膜蜕膜化不足有关。虽然已知转录重编程可响应孕激素驱动蜕膜化,但直接介导这种激素反应的关键信号效应物尚未完全了解。这一知识空白在临床上具有重要意义,因为确定直接介导孕激素驱动的蜕膜化的早期信号将解决当前诊断和治疗最易发生早期妊娠丢失的患者的一些局限性。我们最近揭示,早幼粒细胞白血病锌指(PLZF)是孕激素受体的直接靶标,对于人子宫内膜基质细胞(hESC)的蜕膜化是必需的。本研究的目的是使用已建立的体外 hESC 培养模型、siRNA 介导的敲低方法和 RNA-seq 技术,结合生物信息学分析和验证,确定在 hESC 蜕膜化过程中 PLZF 控制的全基因组转录程序。我们发现,PLZF 在调节参与细胞过程的基因中是至关重要的,这些基因对于 hESC 转化为上皮样蜕膜细胞时发生的典型形态和功能变化是必需的,例如增殖和细胞迁移。我们预测,本研究中确定的转录组数据集不仅将有助于更深入地了解 PLZF 依赖性子宫内膜蜕膜化的分子水平,而且可能会推进更有效的分子诊断和治疗的发展,以基于功能失调的子宫内膜来管理女性不孕和不育症。