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转录因子 ID1 参与基质细胞的蜕膜化:子痫前期的意义。

Transcription factor ID1 is involved in decidualization of stromal cells: Implications in preeclampsia.

机构信息

Divisions of Research, Atlanta, GA, United States; Department of Gynecology and Obstetrics, Atlanta, GA, United States; Emory University School of Medicine, Atlanta, GA, United States.

Maternal Fetal Medicine, Atlanta, GA, United States; Department of Gynecology and Obstetrics, Atlanta, GA, United States; Emory University School of Medicine, Atlanta, GA, United States.

出版信息

Pregnancy Hypertens. 2020 Jul;21:7-13. doi: 10.1016/j.preghy.2020.04.006. Epub 2020 Apr 24.

Abstract

Decidual stromal cells (DSC) from women with preeclampsia (PE) show defective decidualization upon in vitro treatment with cAMP. Decidualization is associated with a multitude of gene expression changes and is a prerequisite for embryo implantation. We reason that the process of decidualization involves a cascade of changes in transcriptional regulators. Our prior studies have found defective decidualization of PE-DSCs as reflected by low prolactin (PRL) levels and other decidualization markers. Transcription factor array analysis identified inhibitor of DNA binding (ID1) and FOXO1 as top differentially expressed genes during decidualization. Unlike ID1, FOXO1 involvement in decidualization has been established. We hypothesized that ID1 plays a major role in regulating stromal cell decidualization. Our data shows basal ID1 mRNA expression is significantly higher in PE DSCs. Cyclic AMP-mediated decidualization significantly upregulates ID1 mRNA expression in DSCs and siRNA-mediated knockdown of ID1 significantly interferes with decidualization as shown by a reduction in PRL and FOXO1 expression, and morphologic criteria. Thus ID1 may serve as a master regulator of stromal cell differentiation and defects in ID1 expression may affect decidualization as seen in PE-DSCs.

摘要

蜕膜基质细胞(DSC)来源于先兆子痫(PE)女性,在体外用 cAMP 处理时表现出蜕膜化缺陷。蜕膜化与许多基因表达变化有关,是胚胎植入的前提。我们推断蜕膜化过程涉及转录调节因子的级联变化。我们之前的研究发现,PE-DSC 的蜕膜化缺陷表现为催乳素(PRL)水平和其他蜕膜化标志物降低。转录因子阵列分析确定 DNA 结合抑制剂(ID1)和 FOXO1 是蜕膜化过程中表达差异最大的基因。与 ID1 不同,FOXO1 在蜕膜化中的参与已得到证实。我们假设 ID1 在调节基质细胞蜕膜化中起主要作用。我们的数据显示,PE-DSC 中的基础 ID1 mRNA 表达显着升高。环 AMP 介导的蜕膜化显着上调 DSC 中的 ID1 mRNA 表达,siRNA 介导的 ID1 敲低显着干扰蜕膜化,表现为 PRL 和 FOXO1 表达减少,以及形态学标准。因此,ID1 可能作为基质细胞分化的主调节因子,ID1 表达缺陷可能会影响如 PE-DSCs 中所见的蜕膜化。

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