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Crystal structure of the polymerase PA_C-PB1_N complex from an avian influenza H5N1 virus

机译:禽流感H5N1病毒聚合酶PA_C-PB1_N复合物的晶体结构

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The recent emergence of highly pathogenic avian influenza A virus strains with subtype H5N1 pose a global threat to human health. Elucidation of the underlying mechanisms of viral replication is critical for development of anti-influenza virus drugs. The influenza RNA-dependent RNA polymerase (RdRp) heterotrimer has crucial roles in viral RNA replication and transcription. It contains three proteins: PA, PB1 and PB2. PB1 harbours polymerase and endonuclease activities and PB2 is responsible for cap binding; PA is implicated in RNA replication and proteolytic activity, although its function is less clearly defined. Here we report the 2.9 angstrom structure of avian H5N1 influenza A virus PA (PA_C, residues 257-716) in complex with the PA-binding region of PB1 (PB1_N, residues 1-25). PA_C has a fold resembling a dragon's head with PB1_N clamped into its open 'jaws'. PB1_N is a known inhibitor that blocks assembly of the polymerase heterotrimer and abolishes viral replication. Our structure provides details for the binding of PB1_N to PA_C at the atomic level, demonstrating a potential target for novel anti-influenza therapeutics. We also discuss a potential nucleotide binding site and the roles of some known residues involved in polymerase activity. Furthermore, to explore the role of PA in viral replication and transcription, we propose a model for the influenza RdRp heterotrimer by comparing PA_C with the λ_3 reovirus polymerase structure, and docking the PA_C structure into an available low resolution electron microscopy map.
机译:H5N1亚型高致病性禽流感病毒株的最新出现对人类健康构成了全球威胁。阐明病毒复制的潜在机制对于开发抗流感病毒药物至关重要。依赖于流感RNA的RNA聚合酶(RdRp)异三聚体在病毒RNA复制和转录中起着至关重要的作用。它包含三种蛋白质:PA,PB1和PB2。 PB1具有聚合酶和核酸内切酶活性,而PB2负责帽结合。 PA与RNA复制和蛋白水解活性有关,尽管其功能尚不清楚。在这里,我们报告了与PB1的PA结合区域(PB1_N,残基1-25)复合的禽类H5N1甲型流感病毒PA(PA_C,残基257-716)的2.9埃结构。 PA_C的褶皱类似于龙的头部,PB1_N夹在其开口的“下巴”中。 PB1_N是一种已知的抑制剂,可阻止聚合酶异三聚体的装配并消除病毒复制。我们的结构提供了在原子水平上PB1_N与PA_C结合的详细信息,证明了新型抗流感疗法的潜在靶标。我们还讨论了潜在的核苷酸结合位点和一些参与聚合酶活性的已知残基的作用。此外,为了探索PA在病毒复制和转录中的作用,我们通过比较PA_C与λ_3呼肠孤病毒聚合酶结构,并将PA_C结构对接到可用的低分辨率电子显微镜图中,提出了一种流感RdRp异三聚体模型。

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