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Computational networks of activating transcription factor 3 gene in Huh7 cell lines and hepatitis C virus-infected Huh7 cell lines

机译:Huh7细胞系中转录因子3基因的计算网络和丙型肝炎病毒感染HUH7细胞系

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摘要

Activating transcription factor 3 (ATF3) is an adaptive-response gene of the ATF family. ATF3 activity may be induced in response to a number of different stress-associated signals and ATF3 is involved in a variety of cellular processes. However, the functions of ATF3 and its molecular networks in human hepatoma cells lines and hepatitis C virus-infected Huh7 (HCV-Huh7) cells are not well understood. In the present study, ATF3 regulatory networks in Huh7 and HCV-Huh7 cell lines were established using the linear programming-based GRNinfer software and molecule annotation system 3.0 software. The gene expression omnibus dataset, GSE20948, was analyzed. The resulting network consisted of clusters located upstream and downstream of ATF3 in Huh7 and HCV-Huh7 cell lines. Using the annotation, visualization and integrated discovery (DAVID) software, 10 activation and 2 inhibition enriched functional annotation clusters were identified downstream of ATF3 in HCV-Huh7 cells. However, there were no enriched functional annotation clusters identified upstream of ATF3 in HCV-Huh7 cells. Furthermore, no clusters were identified downstream nor upstream of ATF3 in Huh7 cells. Gene ontology term and Kyoto encyclopedia of genes and genomes pathway analyses demonstrated that ATF3 may be involved in a number of biological processes, in particular, in metabolism regulation in HCV-Huh7 cells. It is hypothesized that the ATF3 pathway may be activated in Huh7 cells following HCV infection and that it is a potential hub' in the network of HCV-Huh7 cells.
机译:激活转录因子3(ATF3)是ATF家族的自适应响应基因。可以响应于多种不同的应力相关信号和ATF3参与各种细胞过程的ATF3活性。然而,ATF3及其分子网络在人肝癌细胞系和丙型肝炎病毒感染HUH7(HCV-HUH7)细胞中的功能尚不清楚。在本研究中,使用基于线性编程的GRNInfer软件和分子注释系统3.0软件建立了HUH7和HCV-HUH7细胞系中的ATF3调节网络。分析了Gene表达综合数据集GSE20948。得到的网络由位于HUH7和HCV-HUH7细胞系上的上游和下游的簇组成。使用注释,可视化和集成发现(David)软件,10个激活和2个抑制富集的功能注释簇在HCV-HUH7细胞中鉴定了ATF3的下游。然而,在HCV-HUH7细胞中没有鉴定在ATF3的上游富集的功能注释簇。此外,在HUH7细胞中没有鉴定下游的簇,或者在HUH7细胞中的上游。基因本体术语和基因和基因组途径分析的基因内容术语和京都百科全书证明,ATF3可以参与许多生物过程,特别是在HCV-HUH7细胞中的代谢调节中。假设ATF3途径可以在HCV感染后的HUH7细胞中激活,并且在HCV-HUH7细胞网络中是一种潜在的枢纽。

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