A novel regulatory mechanism network mediated by lncRNA TUG1 that induces the impairment of spiral artery remodeling in preeclampsia

螺旋动脉 基因沉默 小RNA 生物 子痫前期 表观遗传学 发病机制 癌症研究 细胞生物学 长非编码RNA 基因 生物信息学 核糖核酸 胎儿 遗传学 胎盘 免疫学 怀孕
作者
Yetao Xu,Dan Wu,Bingqing Hui,Lijun Shu,Xiaotong Tang,Cong Wang,Jiaheng Xie,Yin Yin,Matthew Sagnelli,Nana Yang,Ziyan Jiang,Yuanyuan Zhang,Lizhou Sun
出处
期刊:Molecular Therapy [Elsevier]
卷期号:30 (4): 1692-1705 被引量:25
标识
DOI:10.1016/j.ymthe.2022.01.043
摘要

Preeclampsia (PE) is associated with maternal and fetal perinatal morbidity and mortality, which brings tremendous suffering and imposes an economic burden worldwide. The failure of uterine spiral artery remodeling may be related to the abnormal function of trophoblasts and lead to the occurrence and progression of PE. Aberrant expression of long non-coding RNAs (lncRNAs) is involved in the failure of uterine spiral artery remodeling. However, the regulation of lncRNA expression in PE is poorly characterized. Here, we reported that hypoxia-induced microRNA (miR)-218 inhibited the expression of lncRNA TUG1 by targeting FOXP1. Further RNA sequencing and mechanism analysis revealed that silencing of TUG1 increased the expression of DNA demethylase TET3 and proliferation-related DUSP family, including DUSP2, DUSP4, and DUSP5, via binding to SUV39H1 in the nucleus. Moreover, TUG1 modulated the DUSP family in vitro through a TET3-mediated epigenetic mechanism. Taken together, our results unmask a new regulatory network mediated by TUG1 as an essential determinant of the pathogenesis of PE, which regulates cell growth and possibly the occurrence and development of other diseases.
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