Department of Cardiology, Xiangtan Central Hospital, Xiangtan, China.
Department of Cardiology, The First Affiliated Hospital of Guangxi Medical University, Nanning, China.
Sci Rep. 2023 May 11;13(1):7701. doi: 10.1038/s41598-023-34851-z.
Atrial fibrosis is a crucial contributor to initiation and perpetuation of atrial fibrillation (AF). This study aimed to identify a circRNA-miRNA-mRNA competitive endogenous RNA (ceRNA) regulatory network related to atrial fibrosis in AF, especially to validate hsa_circ_0000672/hsa_miR-516a-5p/TRAF6 ceRNA axis in AF preliminarily. The circRNA-miRNA-mRNA ceRNA network associated with AF fibrosis was constructed using bioinformatic tools and literature reviews. Left atrium (LA) low voltage was used to represent LA fibrosis by using LA voltage matrix mapping. Ten controls with sinus rhythm (SR), and 20 patients with persistent AF including 12 patients with LA low voltage and 8 patients with LA normal voltage were enrolled in this study. The ceRNA regulatory network associated with atrial fibrosis was successfully constructed, which included up-regulated hsa_circ_0000672 and hsa_circ_0003916, down-regulated miR-516a-5p and five up-regulated hub genes (KRAS, SMAD2, TRAF6, MAPK11 and SMURF1). In addition, according to the results of Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis, these hub genes were clustered in TGF-beta and MAPK signaling pathway. In the patients with persistent AF, hsa_circ_0000672 expression in peripheral blood monocytes was significantly higher than those in controls with SR by quantitative real-time polymerase chain reaction (p-value < 0.001). Furthermore, hsa_circ_0000672 expression was higher in peripheral blood monocytes of persistent AF patients with LA low voltage than those with LA normal voltage (p-value = 0.002). The dual-luciferase activity assay confirmed that hsa_circ_0000672 exerted biological functions as a sponge of miR-516a-5p to regulate expression of its target gene TRAF6. Hsa_circ_0000672 expression in peripheral blood monocytes may be associated with atrial fibrosis. The hsa_circ_0000672 may be involved in atrial fibrosis by indirectly regulating TRAF6 as a ceRNA by sponging miR-516a-5p.
心房纤维化是心房颤动(AF)起始和持续的关键因素。本研究旨在鉴定与 AF 相关的心房纤维化的环状 RNA-miRNA-mRNA 竞争性内源 RNA(ceRNA)调控网络,特别是初步验证 hsa_circ_0000672/hsa_miR-516a-5p/TRAF6 ceRNA 轴。使用生物信息学工具和文献综述构建与 AF 纤维化相关的环状 RNA-miRNA-mRNA ceRNA 网络。通过左房电压矩阵图,左房低电压用于代表左房纤维化。本研究纳入了 10 名窦性节律(SR)的对照者和 20 名持续性 AF 患者,其中 12 名患者左房低电压,8 名患者左房正常电压。成功构建了与心房纤维化相关的 ceRNA 调控网络,包括上调的 hsa_circ_0000672 和 hsa_circ_0003916,下调的 miR-516a-5p 和五个上调的枢纽基因(KRAS、SMAD2、TRAF6、MAPK11 和 SMURF1)。此外,根据京都基因与基因组百科全书(KEGG)通路分析的结果,这些枢纽基因聚类在 TGF-β和 MAPK 信号通路中。在持续性 AF 患者中,实时定量聚合酶链反应(p 值<0.001)显示外周血单核细胞中 hsa_circ_0000672 的表达明显高于窦性节律对照者。此外,持续性 AF 患者中左房低电压者外周血单核细胞中 hsa_circ_0000672 的表达高于左房正常电压者(p 值=0.002)。双荧光素酶活性测定证实 hsa_circ_0000672 通过作为 miR-516a-5p 的海绵发挥生物学功能,以调节其靶基因 TRAF6 的表达。外周血单核细胞中 hsa_circ_0000672 的表达可能与心房纤维化有关。hsa_circ_0000672 可能通过间接调节 TRAF6 作为 ceRNA 来调节心房纤维化,通过海绵吸附 miR-516a-5p。