Reduced miR-513a-5p expression in COPD may regulate airway mucous cell hyperplasia through TFR1-dependent signaling.

The Kaohsiung journal of medical sciences Pub Date : 2024-02-01 Epub Date: 2023-11-02 DOI:10.1002/kjm2.12777
Jia Zhou, Jun-Yi Du, Rui Xu, Xiao-Juan Wu, Guo-Yue Zhang
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Abstract

Airway mucous cell metaplasia and mucous hypersecretion is one of the key characteristic pathophysiological status of chronic obstructive pulmonary disease (COPD). micro(mi)RNAs are acknowledged as non-encoding RNA molecules playing important roles in gene expression regulation. In this study, we searched the Gene Expression Omnibus (GEO) database for the differentially expressed miRNAs between COPD and non-COPD controls with bioinformatics analysis. Finally, we focused on miR-513a-5p and investigated the potential mechanism by which miR-513a-5p regulates airway mucous hypersecretion and goblet cell metaplasia. A dual-luciferase reporter assay was then showing that miR-513a-5p targeted the 3'-UTR of TFR1 and inhibited its expression in vitro. In vivo transfection demonstrated that TFR1 downregulation partially blocked MUC5AC hypersecretion and goblet cell hyperplasia in COPD model rats. In vitro study, CSE increased the intracellular expression and secretion of MUC5AC by BEAS-2B branchial epithelial cells in the BEAS-2B cell and THP-1 cell coculture system. Coculture with either miR-513a-5p mimic-pretreated or TFR1-deficient THP-1 cells attenuated intracellular MUC5AC expression in BEAS-2B cells exposed to CSE. ELISA demonstrated that transfection of TFR1 siRNA or pretreatment with miR-513a-5p mimic reduced the secretion of inflammatory factors that are responsible for airway goblet cell hyperplasia, such as IL-1β, IL-13, and IL-17, by THP-1 cells after CSE stimulation. Our findings supported that miR-513a-5p/TFR1 signaling axis might activate macrophages as well as promote airway inflammation and airway mucous cell hyperplasia in COPD.

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COPD中miR-513a-5p表达减少可能通过TFR1依赖性信号传导调节气道粘膜细胞增生。
气道粘液细胞化生和粘液高分泌是慢性阻塞性肺疾病(COPD)的关键病理生理特征之一。micro(mi)RNA被认为是在基因表达调控中发挥重要作用的非编码RNA分子。在这项研究中,我们通过生物信息学分析,在基因表达综合数据库(GEO)中搜索COPD和非COPD对照组之间差异表达的miRNA。最后,我们聚焦于miR-513a-5p,并研究了miR-513a-5p调节气道粘液高分泌和杯状细胞化生的潜在机制。双荧光素酶报告基因测定显示miR-513a-5p靶向TFR1的3'-UTR并在体外抑制其表达。体内转染表明,TFR1下调部分阻断了COPD模型大鼠的MUC5AC高分泌和杯状细胞增生。在体外研究中,CSE在BEAS-2B细胞和THP-1细胞共培养系统中增加了BEAS-2B鳃上皮细胞对MUC5AC的细胞内表达和分泌。在暴露于CSE的BEAS-2B细胞中,与miR-513a-5p模拟物预处理或TFR1缺陷的THP-1细胞共培养减弱了细胞内MUC5AC的表达。ELISA证明,转染TFR1 siRNA或用miR-513a-5p模拟物预处理可减少CSE刺激后THP-1细胞分泌导致气道杯状细胞增生的炎症因子,如IL-1β、IL-13和IL-17。我们的研究结果支持miR-513a-5p/TFR1信号轴可能激活巨噬细胞,并促进COPD患者的气道炎症和气道粘液细胞增生。
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