Yang Lei, Liang Huan, Meng Xianguo, Shen Li, Guan Zhanjiang, Hei Bingchang, Yu Haitao, Qi Shanshan, Wen Xianchun
ICU, The Third Affiliated Hospital of Qiqihar Medical University, Qiqihar 161002, P.R. China.
ICU, The Third Affiliated Hospital of Qiqihar Medical University, Qiqihar 161002, P.R. China.
Mol Ther Nucleic Acids. 2020 Jun 5;20:292-307. doi: 10.1016/j.omtn.2019.12.027. Epub 2020 Jan 10.
Recently, the identification of several circular RNAs (circRNAs) as vital regulators of microRNAs (miRNAs) underlines the increasing complexity of non-coding RNA (ncRNA)-mediated regulatory networks. This study aimed to explore the effects of mmu_circ_0000790 on the biological behaviors of pulmonary artery smooth muscle cells (PASMCs) in hypoxic pulmonary hypertension (HPH). The HPH mouse model and hypoxia-induced PASMC model were initially established, and the expression of mmu_circ_0000790 in the pulmonary vascular tissues and hypoxic PASMCs was determined using quantitative reverse transcriptase polymerase chain reaction (qRT-PCR). A series of in vitro experiments such as dual-luciferase, RNA pull-down, and RNA-binding protein immunoprecipitation (RIP) assays were conducted to evaluate the interactions among mmu_circ_0000790, microRNA-374c (miR-374c), and forkhead transcription factor 1 (FOXC1). The potential physiological functions of mmu_circ_0000790, miR-374c, and FOXC1 in hypoxic PASMCs were investigated through gain- and loss-of function approaches. Upregulated mmu_circ_0000790 was found in both the HPH-pulmonary vascular tissues and hypoxic PASMCs. Additionally, mmu_circ_0000790 could competitively bind to miR-374c and consequently upregulate the target gene of miR-374c, FOXC1. It was also observed that mmu_circ_0000790 induced proliferation and inhibited apoptosis of hypoxic PASMCs, which further promoted the pulmonary vascular remodeling in mice with HPH. Therefore, we speculate that mmu_circ_0000790 may serve as a prospective target for the treatment of patients with HPH.
最近,几种环状RNA(circRNA)被鉴定为微小RNA(miRNA)的重要调节因子,这凸显了非编码RNA(ncRNA)介导的调控网络日益增加的复杂性。本研究旨在探讨mmu_circ_0000790对缺氧性肺动脉高压(HPH)中肺动脉平滑肌细胞(PASMC)生物学行为的影响。首先建立HPH小鼠模型和缺氧诱导的PASMC模型,并使用定量逆转录聚合酶链反应(qRT-PCR)测定mmu_circ_0000790在肺血管组织和缺氧PASMC中的表达。进行了一系列体外实验,如双荧光素酶、RNA下拉和RNA结合蛋白免疫沉淀(RIP)分析,以评估mmu_circ_0000790、微小RNA-374c(miR-374c)和叉头转录因子1(FOXC1)之间的相互作用。通过功能获得和功能丧失方法研究了mmu_circ_0000790、miR-374c和FOXC1在缺氧PASMC中的潜在生理功能。在HPH肺血管组织和缺氧PASMC中均发现mmu_circ_0000790上调。此外,mmu_circ_0000790可以竞争性结合miR-374c,从而上调miR-374c的靶基因FOXC1。还观察到mmu_circ_0000790诱导缺氧PASMC增殖并抑制其凋亡,这进一步促进了HPH小鼠的肺血管重塑。因此,我们推测mmu_circ_0000790可能作为治疗HPH患者的潜在靶点。