首页> 外文期刊>Journal of proteome research >Interactome Analysis of the NS1 Protein Encoded by Influenza A H1N1 Virus Reveals a Positive Regulatory Role of Host Protein PRP19 in Viral Replication
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Interactome Analysis of the NS1 Protein Encoded by Influenza A H1N1 Virus Reveals a Positive Regulatory Role of Host Protein PRP19 in Viral Replication

机译:甲型H1N1流感病毒编码的NS1蛋白的Interactome分析揭示了宿主蛋白PRP19在病毒复制中的正调节作用

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Influenza A virus, which can cause severe respiratory illnesses in infected individuals, is responsible for worldwide human pandemics. The NS1 protein encoded by this virus plays a crucial role in regulating the host antiviral response through various mechanisms. In addition, it has been reported that NS1 can modulate cellular pre-mRNA splicing events. To investigate the biological processes potentially affected by the NS1 protein in host cells, NS1-associated protein complexes in human cells were identified using coimmunoprecipitation combined with GeLC-MS/MS. By employing software to build biological process and protein protein interaction networks, NS1-interacting cellular proteins were found to be related to RNA splicing/processing, cell cycle, and protein folding/targeting cellular processes. By monitoring spliced and unspliced RNAs of a reporter plasmid, we further validated that NS1 can interfere with cellular pre-mRNA splicing. One of the identified proteins, pre-mRNA-processing factor 19 (PRP19), was confirmed to interact with the NS1 protein in influenza A virus-infected cells. Importantly, depletion of PRP19 in host cells reduced replication of influenza A virus. In summary, the interactome of influenza A virus NS1 in host cells was comprehensively profiled, and our findings reveal a novel regulatory role for PRP19 in viral replication.
机译:甲型流感病毒可在受感染的个人中引起严重的呼吸道疾病,是全球范围内人类大流行的原因。该病毒编码的NS1蛋白在通过各种机制调节宿主抗病毒应答中起着至关重要的作用。另外,已经报道NS1可以调节细胞前mRNA剪接事件。为了研究宿主细胞中可能受NS1蛋白影响的生物学过程,使用共免疫沉淀法与GeLC-MS / MS结合鉴定了人细胞中与NS1相关的蛋白复合物。通过使用软件建立生物过程和蛋白质蛋白质相互作用网络,发现与NS1相互作用的细胞蛋白质与RNA剪接/加工,细胞周期和蛋白质折叠/靶向细胞过程有关。通过监测报告质粒的剪接和未剪接的RNA,我们进一步验证了NS1可以干扰细胞前mRNA剪接。已确认一种已鉴定的蛋白质,即mRNA加工前因子19(PRP19),与甲型流感病毒感染的细胞中的NS1蛋白相互作用。重要的是,宿主细胞中PRP19的消耗减少了甲型流感病毒的复制。总之,全面分析了甲型流感病毒NS1在宿主细胞中的相互作用组,我们的发现揭示了PRP19在病毒复制中的新型调控作用。

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