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Crystal structure of the RNA-dependent RNA polymerase from influenza Cvirus

机译:丙型流感病毒依赖RNA的RNA聚合酶的晶体结构病毒

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摘要

Negative-sense RNA viruses, such as influenza, encode large, multidomain RNA-dependent RNA polymerases that can both transcribe and replicate the viral RNA genome. In influenza virus, the polymerase (FluPol) is composed of three polypeptides: PB1, PB2 and PA/P3. PB1 houses the polymerase active site, whereas PB2 and PA/P3 contain, respectively, cap-binding and endonuclease domains required for transcription initiation by cap-snatching. Replication occurs through de novo initiation and involves a complementary RNA intermediate. Currently available structures of the influenza A and B virus polymerases include promoter RNA (the 5′ and 3′ termini of viral genome segments), showing FluPol in transcription pre-initiation states,. Here we report the structure of apo-FluPol from an influenza C virus, solved by X-ray crystallography to 3.9 Å, revealing a new ‘closed’ conformation. The apo-FluPol forms a compact particle with PB1 at its centre, capped on one face by PB2 and clamped between the two globular domains of P3. Notably, this structure is radically different from those of promoter-bound FluPols,. The endonuclease domain of P3 and the domains within the carboxy-terminal two-thirds of PB2 are completely rearranged. The cap-binding site is occluded by PB2, resulting in a conformation that is incompatible with transcription initiation. Thus, our structure captures FluPol in a closed, transcription pre-activation state. This reveals the conformation of newly made apo-FluPol in an infected cell, but may also apply to FluPol in the context of a non-transcribing ribonucleoprotein complex. Comparison of the apo-FluPol structure with those of promoter-bound FluPols allows us to propose a mechanism for FluPol activation. Our study demonstrates the remarkable flexibility of influenza virus RNA polymerase, and aids our understanding of the mechanisms controlling transcription and genome replication.
机译:负感RNA病毒(例如流行性感冒)编码大型的多域RNA依赖性RNA聚合酶,它们可以转录和复制病毒RNA基因组 。在流感病毒中,聚合酶(FluPol)由三种多肽组成:PB1,PB2和PA / P3。 PB1包含聚合酶活性位点,而PB2和PA / P3分别包含通过capsnatching 进行转录起始所需的cap-binding和内切核酸酶结构域。复制是通过从头开始进行的,涉及互补的RNA中间体。目前可用的甲型和乙型流感病毒聚合酶结构包括启动子RNA(病毒基因组片段的5'和3'末端),显示FluPol处于转录前起始状态, 。在这里,我们报告了来自丙型流感病毒的apo-FluPol的结构,通过X射线晶体学解析为3.9Å,揭示了一个新的“封闭”构象。 apo-FluPol形成一个紧凑的颗粒,其中心为PB1,一个表面被PB2覆盖,并夹在P3的两个球状结构域之间。值得注意的是,这种结构与启动子结合的FluPols 根本不同。 P3的核酸内切酶结构域和PB2的三分之二的羧基末端结构域被完全重排。帽结合位点被PB2封闭,导致构象与转录起始不相容。因此,我们的结构以封闭的转录预激活状态捕获FluPol。这揭示了在感染的细胞中新产生的载脂蛋白-FluPol的构象,但在非转录核糖核蛋白复合物的情况下也可能适用于FluPol。 apo-FluPol结构与启动子结合的FluPols结构的比较使我们能够提出FluPol激活的机制。我们的研究表明流感病毒RNA聚合酶具有显着的灵活性,有助于我们理解控制转录和基因组复制的机制。

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