首页> 外文期刊>BMC Cardiovascular Disorders >Identification of transcription factors MYC and C/EBPβ mediated regulatory networks in heart failure based on gene expression omnibus datasets
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Identification of transcription factors MYC and C/EBPβ mediated regulatory networks in heart failure based on gene expression omnibus datasets

机译:基于基因表达综合性数据集的心力衰竭鉴定转录因子MYC和C /EBPβ介导的调节网络

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Heart failure is one of leading cause of death worldwide. However, the transcriptional profiling of heart failure is unclear. Moreover, the signaling pathways and transcription factors involving the heart failure development also are largely unknown. Using published Gene Expression Omnibus (GEO) datasets, in the present study, we aim to comprehensively analyze the differentially expressed genes in failing heart tissues, and identified the critical signaling pathways and transcription factors involving heart failure development. The transcriptional profiling of heart failure was identified from previously published gene expression datasets deposited in GSE5406, GSE16499 and GSE68316. The enriched signaling pathways and transcription factors were analyzed using Database for Annotation, Visualization and Integrated Discovery (DAVID) website and gene set enrichment analysis (GSEA) assay. The transcriptional networks were created by Cytoscape. Compared with the normal heart tissues, 90 genes were particularly differentially expressed in failing heart tissues, and those genes were associated with multiple metabolism signaling pathways and insulin signaling pathway. Metabolism and insulin signaling pathway were both inactivated in failing heart tissues. Transcription factors MYC and C/EBPβ were both negatively associated with the expression profiling of failing heart tissues in GSEA assay. Moreover, compared with normal heart tissues, MYC and C/EBPβ were down regulated in failing heart tissues. Furthermore, MYC and C/EBPβ mediated downstream target genes were also decreased in failing heart tissues. MYC and C/EBPβ were positively correlated with each other. At last, we constructed MYC and C/EBPβ mediated regulatory networks in failing heart tissues, and identified the MYC and C/EBPβ target genes which had been reported involving the heart failure developmental progress. Our results suggested that metabolism pathways and insulin signaling pathway, transcription factors MYC and C/EBPβ played critical roles in heart failure developmental progress.
机译:心力衰竭是全世界死亡原因之一。然而,心力衰竭的转录分析尚不清楚。此外,涉及心力衰竭发展的信号通路和转录因子也在很大程度上是未知的。在本研究中使用已发表的基因表达综合(Geo)数据集,我们的目标是全面分析心脏组织失败的差异表达基因,并确定了涉及心力衰竭的关键信号传导途径和转录因子。心力衰竭的转录分析是从GSE5406,GSE16499和GSE68316中沉积的先前公布的基因表达数据集。使用数据库进行注释,可视化和集成发现(David)网站和基因集富集分析(GSEA)测定来分析富集的信号传导途径和转录因子。转录网络由Cytoscape创建。与正常心脏组织相比,在心脏组织失败的情况下,90个基因特别表达,并且这些基因与多种代谢信号传导途径和胰岛素信号通路相关。代谢和胰岛素信号传导途径均在失败的心脏组织中灭活。转录因子Myc和C /EBPβ与GSEA测定中的心脏组织失败的表达分析均产生负面。此外,与正常心脏组织相比,MyC和C /EBPβ在失败的心脏组织中受到调节。此外,在失败的心脏组织中也降低了MyC和C /EBPβ介导的下游靶基因。 Myc和C /EBPβ彼此正相关。最后,我们构建了Myc和C /EBPβ介导的监管网络,在失败的心脏组织中,并确定了据报道的Myc和C /EBPβ靶基因,涉及心力衰竭发育进展。我们的研究结果表明,新陈代谢途径和胰岛素信号通路,转录因子Myc和C /EBPβ在心力衰竭发育进展中发挥了关键作用。

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