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mRNAs expression profiles of high glucose-induced memory in human umbilical vein endothelial cells

机译:高糖诱导人脐静脉内皮细胞记忆的mRNA表达谱

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Purpose: A long-term “memory” of hyperglycemic stress, even when glycemia is normalized, has been previously reported in endothelial cells. However, the molecular mechanism of “metabolic memory” (MM) remains unknown. In this report, we sought to screen at the whole transcriptome level the genes that participate in MM. Methods: In the present research, RNA sequencing was used to determine the protein-coding mRNA expression profiles of human umbilical vein endothelial cells (HUVECs) under normal-glucose concentration (LG), high-glucose concentration (HG), and MM. A series of bioinformatic analyses was performed. HG-induced MM-involved up-regulated genes (up-HGMMGs) and HG-induced MM-involved down-regulated genes (down-HGMMGs) were identified. Afterward, based on up-HGMMGs and down-HGMMGs, the biological functions and signaling pathways were analyzed using Gene Ontology (GO) and the Kyoto Encyclopedia of Genes and Genomes (KEGG). In addition, several of the identified genes were validated by RT-qPCR. Results: A total of 726 HGMMGs were identified, including 210 down- and 516 up-HGMMGs, which were enriched in the cell cycle (hsa04110), oocyte meiosis (hsa04114), p53 signaling pathway (hsa04115), and oxidative phosphorylation (hsa00190), among others. The protein–protein-interaction (PPI) network consisted of 462 nodes and 2656 connections, and four main modules were identified by MCODE. The cell cycle (hsa04110), oocyte meiosis (hsa04114), p53 signaling pathway (hsa04115), and oxidative phosphorylation (hsa00190), among others, could be potential therapeutic targets of HG-induced MM in endothelial cells. The real-time PCR results validated the RNA-seq data. Conclusion: This study identified crucial mRNAs related to MM-persistent injury in endothelial cells even after switching the cells from high- glucose to normal glucose levels. Further research focusing on these mRNA may unravel new ways to modify MM in diabetes.
机译:目的:即使在血糖正常化的情况下,以前也曾在内皮细胞中报道过长期的高血糖应激“记忆”。但是,“代谢记忆”(MM)的分子机制仍然未知。在本报告中,我们试图在整个转录组水平上筛选参与MM的基因。方法:在本研究中,使用RNA测序来确定正常葡萄糖浓度(LG),高葡萄糖浓度(HG)和MM下人脐静脉内皮细胞(HUVEC)的蛋白质编码mRNA表达谱。进行了一系列的生物信息学分析。确定了HG诱导的MM参与上调基因(up-HGMMGs)和HG诱导的MM参与下调基因(down-HGMMGs)。然后,基于上HGMMG和下HGMMG,使用基因本体论(GO)和《京都基因与基因组百科全书》(KEGG)分析了生物学功能和信号传导途径。此外,通过RT-qPCR验证了一些已鉴定的基因。结果:共鉴定出726个HGMMG,其中包括210个向下的HGMMG和516个向上的HGMMG,它们富含细胞周期(hsa04110),卵母细胞减数分裂(hsa04114),p53信号通路(hsa04115)和氧化磷酸化(hsa00190)等等。蛋白质-蛋白质相互作用(PPI)网络由462个节点和2656个连接组成,MCODE识别出四个主要模块。细胞周期(hsa04110),卵母细胞减数分裂(hsa04114),p53信号传导途径(hsa04115)和氧化磷酸化(hsa00190)等可能是内皮细胞中HG诱导的MM的潜在治疗靶标。实时PCR结果验证了RNA-seq数据。结论:即使将细胞从高葡萄糖水平切换为正常葡萄糖水平,该研究也发现了内皮细胞中与MM持续损伤相关的关键mRNA。专注于这些mRNA的进一步研究可能会揭示修饰糖尿病MM的新方法。

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