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The influenza virus RNA synthesis machine: advances in its structure and function.

机译:流感病毒RNA合成机:其结构和功能不断进步。

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摘要

The influenza A viruses are the causative agents of respiratory disease that occurs as yearly epidemics and occasional pandemics. These viruses are endemic in wild avian species and can sometimes break the species barrier to infect and generate new virus lineages in humans. The influenza A virus genome consists of eight single-stranded, negative-polarity RNAs that form ribonucleoprotein complexes by association to the RNA polymerase and the nucleoprotein. In this review we focus on the structure of this RNA-synthesis machines and the included RNA polymerase, and on the mechanisms by which they express their genetic information as mRNAs and generate progeny ribonucleoproteins that will become incorporated into new infectious virions. New structural, biochemical and genetic data are rapidly accumulating in this very active area of research. We discuss these results and attempt to integrate the information into structural and functional models that may help the design of new experiments and further our knowledge on virus RNA replication and gene expression. This interplay between structural and functional data will eventually provide new targets for controlled attenuation or antiviral therapy.
机译:甲型流感病毒是呼吸道疾病的病原体,每年流行一次,偶尔流行。这些病毒是野生禽类中的特有病毒,有时会破坏物种的感染壁垒并在人类中产生新的病毒谱系。甲型流感病毒基因组由八个单链负极性RNA组成,这些RNA通过与RNA聚合酶和核蛋白结合形成核糖核蛋白复合物。在这篇综述中,我们着重于这种RNA合成机的结构和所包括的RNA聚合酶,以及它们将其遗传信息表达为mRNA并生成后代核糖核蛋白的机制,这些后代将被整合到新的感染性病毒粒子中。在这个非常活跃的研究领域中,新的结构,生化和遗传数据正在迅速积累。我们讨论这些结果,并尝试将信息整合到结构和功能模型中,这可能有助于新实验的设计,并进一步增进我们对病毒RNA复制和基因表达的了解。结构和功能数据之间的这种相互作用最终将为控制减毒或抗病毒治疗提供新的目标。

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