首页> 美国卫生研究院文献>other >Picornavirus genome replication: Identification of the surface of the poliovirus (PV) 3C dimer that interacts with PV 3Dpol during VPg uridylylation and construction of a structural model for the PV 3C2-3Dpol complex
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Picornavirus genome replication: Identification of the surface of the poliovirus (PV) 3C dimer that interacts with PV 3Dpol during VPg uridylylation and construction of a structural model for the PV 3C2-3Dpol complex

机译:微小核糖核酸病毒基因组复制:在VPg尿酰化期间与脊髓灰质炎3Dpol相互作用的脊髓灰质炎病毒(PV)3C二聚体表面的鉴定和PV 3C2-3Dpol复合体的结构模型的构建

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摘要

Picornaviruses have a peptide termed VPg covalently linked to the 5′-end of the genome. Attachment of VPg to the genome occurs in at least two steps. First, Tyr-3 of VPg, or some precursor thereof, is used as a primer by the viral RNA-dependent RNA polymerase, 3Dpol, to produce VPg-pUpU. Second, VPg-pUpU is used as a primer to produce full-length genomic RNA. Production of VPg-pUpU is templated by a single adenylate residue located in the loop of an RNA stem-loop structure termed oriI by using a slide-back mechanism. Recruitment of 3Dpol to and its stability on oriI has been suggested to require an interaction between the back of the thumb subdomain of 3Dpol and an undefined region of the 3C domain of viral protein 3CD. We have performed surface-acidic-to-alanine-scanning mutagenesis of 3C to identify the surface of 3C with which 3Dpol interacts. This analysis identified numerous viable PV mutants with reduced growth kinetics that correlated to reduced kinetics of RNA synthesis that was attributable to a change in VPg-pUpU production. Importantly, these 3C derivatives were all capable of binding to oriI as well as wild-type 3C. Synthetic lethality was observed for these mutants when placed in the context of a PV mutant containing 3Dpol-R455A, a residue on the back of the thumb required for VPg uridylylation. These data were used to guide molecular docking of the structures for a poliovirus 3C dimer and 3Dpol, leading to a structural model for the 3C2-3Dpol complex that extrapolates well to all picornaviruses.
机译:微小RNA病毒具有称为VPg的肽,该肽共价连接至基因组的5'-末端。 VPg与基因组的连接至少需要两个步骤。首先,VPg的Tyr-3或其某些前体被病毒RNA依赖性RNA聚合酶3Dpol用作引物,以生产VPg-pUpU。其次,VPg-pUpU用作产生全长基因组RNA的引物。 VPg-pUpU的产生是通过使用回滑机制,通过位于称为oriI的RNA茎环结构的环中的单个腺苷酸残基来模板化的。 3Dpol的招募及其在oriI上的稳定性已被要求在3Dpol的拇指亚结构域的背面和病毒蛋白3CD的3C结构域的未定义区域之间相互作用。我们已经对3C进行了表面酸性至丙氨酸扫描诱变,以识别3Dpol与之相互作用的3C表面。这项分析确定了许多具有活力的PV突变体,这些突变体的生长动力学下降与RNA合成动力学下降有关,这归因于VPg-pUpU产量的变化。重要的是,这些3C衍生物都能够与oriI以及野生型3C结合。将这些突变体置于含有3Dpol-R455A的PV突变体的情况下,观察到这些合成突变体的合成杀伤力,该突变体是VPg尿酰化所需的拇指背面残基。这些数据用于指导脊髓灰质炎病毒3C二聚体和3Dpol结构的分子对接,从而形成3C2-3Dpol复合体的结构模型,该模型可以很好地外推到所有小核糖核酸病毒。

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