Zheng Yu, Zhang Yingjie, Zhang Xiu, Dang Yini, Cheng Yihui, Hua Wenjie, Teng Meiling, Wang Shenrui, Lu Xiao
Department of Rehabilitation Medicine, The First Affiliated Hospital of Nanjing Medical University, Nanjing, China.
Department of Gastroenterology, The First Affiliated Hospital of Nanjing Medical University, Nanjing, China.
Front Cardiovasc Med. 2021 Oct 6;8:747449. doi: 10.3389/fcvm.2021.747449. eCollection 2021.
Increasing evidence has uncovered the roles of lncRNA-miRNA-mRNA regulatory networks in cardiovascular diseases. However, the crosstalk between ceRNA networks and development of heart failure (HF) remains unclear. This study was to investigate the role of lncRNA-mediated ceRNA networks in the pathophysiological process of HF and its potential regulatory functions on programmed cell death. We firstly screened the GSE77399, GSE52601 and GSE57338 datasets in the NCBI GEO database for screening differentially expressed lncRNAs, miRNAs and mRNAs. lncRNA-miRNA-mRNA regulatory networks based on the ceRNA theory were subsequently constructed. GO and KEGG enrichment analysis was conducted to predict potential biological functions of mRNAs in ceRNA networks. Differentially expressed mRNAs were then interacted with programmed cell death related genes. lncRNA-mediated ceRNA regulatory pathways on programmed cell death were validated with qRT-PCR testing. Based on our bioinformatic analysis, two lncRNAs, eight miRNAs and 65 mRNAs were extracted to construct two lncRNAs-mediated ceRNA networks in HF. Biological processes and pathways were enriched in extracellular matrix. Seven lncRNA-mediated ceRNA regulatory pathways on programmed cell death, GAS5/miR-345-5p/ADAMTS4, GAS5/miR-18b-5p/AQP3, GAS5/miR-18b-5p/SHISA3, GAS5/miR-18b-5p/C1orf105, GAS5/miR-18b-5p/PLIN2, GAS5/miR-185-5p/LPCAT3, and GAS5/miR-29b-3p/STAT3, were finally validated. Two novel ceRNA regulatory networks in HF were discovered based on our bioinformatic analysis. Based on the interaction and validation analysis, seven lncRNA GAS5-mediated ceRNA regulatory pathways were hypothesized to impact programmed cell death including seven for apoptosis, three for ferroptosis, and one for pyroptosis. Upon which, we provided novel insights and potential research plots for bridging ceRNA regulatory networks and programmed cell death in HF.
越来越多的证据揭示了lncRNA-miRNA-mRNA调控网络在心血管疾病中的作用。然而,ceRNA网络与心力衰竭(HF)发展之间的相互作用仍不清楚。本研究旨在探讨lncRNA介导的ceRNA网络在HF病理生理过程中的作用及其对程序性细胞死亡的潜在调控功能。我们首先在NCBI GEO数据库中筛选GSE77399、GSE52601和GSE57338数据集,以筛选差异表达的lncRNAs、miRNAs和mRNAs。随后基于ceRNA理论构建lncRNA-miRNA-mRNA调控网络。进行GO和KEGG富集分析以预测ceRNA网络中mRNA的潜在生物学功能。然后将差异表达的mRNA与程序性细胞死亡相关基因进行相互作用。通过qRT-PCR检测验证lncRNA介导的ceRNA对程序性细胞死亡的调控途径。基于我们的生物信息学分析,提取了两个lncRNAs、八个miRNAs和65个mRNAs,以构建HF中两个lncRNAs介导的ceRNA网络。生物学过程和途径在细胞外基质中富集。最终验证了七个lncRNA介导的ceRNA对程序性细胞死亡的调控途径,即GAS5/miR-345-5p/ADAMTS4、GAS5/miR-18b-5p/AQP3、GAS5/miR-18b-5p/SHISA3、GAS5/miR-18b-5p/C1orf105、GAS5/miR-18b-5p/PLIN2、GAS5/miR-185-5p/LPCAT3和GAS5/miR-29b-3p/STAT3。基于我们的生物信息学分析发现了HF中两个新的ceRNA调控网络。基于相互作用和验证分析,推测七个lncRNA GAS介导的ceRNA调控途径影响程序性细胞死亡,其中七个与凋亡有关,三个与铁死亡有关,一个与焦亡有关。据此,我们为连接HF中的ceRNA调控网络和程序性细胞死亡提供了新的见解和潜在的研究方向。