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Proteomic analysis of hepatitis C virus (HCV) core protein transfection and host regulator PA28γ knockout in HCV pathogenesis: A network-based study

机译:丙型肝炎病毒(HCV)核心蛋白转染和宿主调节因子PA28γ敲除在HCV发病机理中的蛋白质组学分析:基于网络的研究

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Hepatitis C virus (HCV) causes chronic liver disease worldwide. HCV Core protein (Core) forms the viral capsid and is crucial for HCV pathogenesis and HCV-induced hepatocellular carcinoma, through its interaction with the host factor proteasome activator PA28γ. Here, using BD-PowerBlot high-throughput Western array, we attempt to further investigate HCV pathogenesis by comparing the protein levels in liver samples from Core-transgenic mice with or without the knockout of PA28γ expression (abbreviated PA28γ ~(-/-)CoreTG and CoreTG, respectively) against the wild-type (WT). The differentially expressed proteins integrated into the human interactome were shown to participate in compact and well-connected cellular networks. Functional analysis of the interaction networks using a newly developed data warehouse system highlighted cellular pathways associated with vesicular transport, immune system, cellular adhesion, and cell growth and death among others that were prominently influenced by Core and PA28γ in HCV infection. Follow-up assays with in vitro HCV cell culture systems validated VTI1A, a vesicular transport associated factor, which was upregulated in CoreTG but not in PA28γ ~(-/-)CoreTG, as a novel regulator of HCV release but not replication. Our analysis provided novel insights into the Core-PA28γ interplay in HCV pathogenesis and identified potential targets for better anti-HCV therapy and potentially novel biomarkers of HCV infection.
机译:丙型肝炎病毒(HCV)在全世界范围内引起慢性肝病。 HCV核心蛋白(Core)通过与宿主因子蛋白酶体激活剂PA28γ相互作用,形成病毒衣壳,对于HCV发病机理和HCV诱导的肝细胞癌至关重要。在这里,我们使用BD-PowerBlot高通量Western阵列,通过比较来自带有或不带有敲除PA28γ表达(缩写为PA28γ〜(-/-)CoreTG)的Core转基因小鼠肝脏样品中的蛋白质水平,尝试进一步研究HCV发病机理。和CoreTG分别针对野生型(WT)。整合到人类交互基因组中的差异表达蛋白显示参与紧凑且连接良好的细胞网络。使用新开发的数据仓库系统对相互作用网络进行功能分析,突出显示了与囊泡运输,免疫系统,细胞粘附以及细胞生长和死亡相关的细胞途径,这些途径在HCV感染中受到Core和PA28γ的显着影响。体外HCV细胞培养系统的后续检测验证了VTI1A是一种水泡运输相关因子,它在CoreTG中上调,但在PA28γ〜(-/-)CoreTG中没有上调,是HCV释放但不是复制的新型调节剂。我们的分析为HCV发病机理中的核心-PA28γ相互作用提供了新颖的见解,并确定了更好的抗HCV治疗的潜在靶标以及潜在的HCV感染生物标志物。

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