Liu Fengqiong, Gong Ruijie, Lv Xiaofei, Li Huangyuan
Fujian Provincial Key Laboratory of Environment factors and Cancer, School of Public Health, Fujian Medical University, Fujian, China; Department of Epidemiology and Health Statistic, School of Public Health, Fujian Medical University, Fujian, China.
Fujian Provincial Key Laboratory of Environment factors and Cancer, School of Public Health, Fujian Medical University, Fujian, China.
Gene. 2018 Apr 15;650:19-26. doi: 10.1016/j.gene.2018.01.089. Epub 2018 Feb 1.
Increasing amounts of evidence have indicated that non-coding RNAs (ncRNAs) have important regulatory potential in various biological processes. However, the contribution of ncRNAs, especially long non-coding RNAs (lncRNAs) to drug induced steatosis remain largely unknown. The aim of this study is to investigate miRNA, lncRNA and mRNA expression profiles and their potential roles in the process of drug induced steatosis. Microarray expression profiles of miRNAs, lncRNAs and mRNAs were determined in dexamethasone treated HepG2 cell as well as control cell. Differential expression, pathway and gene network analyses were developed to identify possible functional RNA molecules in dexamethasone induced steatosis. Compared with control HepG2 cell, 652 lncRNAs (528 up-regulated and 124 down-regulated), 655 mRNAs (527 upregulated and 128 down-regulated) and 114 miRNAs (55 miRNAs up-regulated and 59 down-regulated) were differentially expressed in dexamethasone treated HepG2 cell. Pathway analysis showed that the fatty acid biosynthesis, insulin resistance, PPAR signaling pathway, regulation of lipolysis in adipocytes, carbohydrate digestion and absorption, steroid hormone biosynthesis signaling pathways had a close relationship with dexamethasone induced steatosis. 10 highly dysregulated mRNAs and 20 miRNAs, which are closely related to lipid metabolism, were identified and validated by PCR, which followed by ceRNA analysis. CeRNA network analysis identified 5 lipid metabolism related genes, including CYP7A1, CYP11A1, PDK4, ABHD5, ACSL1. It also identified 12 miRNAs (miR-23a-3p, miR-519d-3p, miR-4328, miR-15b-5p etc.) and 177 lncRNAs (ENST00000508884, ENST00000608794, ENST00000568457 etc.). Our results provide a foundation and an expansive view of the roles and mechanisms of ncRNAs in dexamethasone induced steatosis.
越来越多的证据表明,非编码RNA(ncRNAs)在各种生物过程中具有重要的调控潜力。然而,ncRNAs,尤其是长链非编码RNA(lncRNAs)在药物性脂肪变性中的作用仍 largely未知。本研究的目的是研究miRNA、lncRNA和mRNA的表达谱及其在药物性脂肪变性过程中的潜在作用。在用地塞米松处理的HepG2细胞以及对照细胞中测定了miRNA、lncRNA和mRNA的微阵列表达谱。开展了差异表达、通路和基因网络分析,以鉴定地塞米松诱导脂肪变性中可能的功能性RNA分子。与对照HepG2细胞相比,在用地塞米松处理的HepG2细胞中有652个lncRNAs(528个上调和124个下调)、655个mRNA(527个上调和128个下调)和114个miRNA(55个miRNA上调和59个下调)差异表达。通路分析表明,脂肪酸生物合成、胰岛素抵抗、PPAR信号通路、脂肪细胞中脂解的调节、碳水化合物消化和吸收、类固醇激素生物合成信号通路与地塞米松诱导的脂肪变性密切相关。通过PCR鉴定并验证了10个高度失调的mRNA和20个与脂质代谢密切相关的miRNA,随后进行ceRNA分析。ceRNA网络分析鉴定出5个与脂质代谢相关的基因,包括CYP7A1、CYP11A1、PDK4、ABHD5、ACSL1。它还鉴定出12个miRNA(miR-23a-3p、miR-519d-3p、miR-4328、miR-15b-5p等)和177个lncRNA(ENST00000508884、ENST00000608794、ENST00000568457等)。我们的结果为ncRNAs在地塞米松诱导的脂肪变性中的作用和机制提供了基础和广阔的视角。