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Systems approaches to influenza-virus host interactions and the pathogenesis of highly virulent and pandemic viruses

机译:流感病毒宿主相互作用和高毒力和大流行性病毒的发病机理的系统方法

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摘要

Influenza virus research has recently undergone a shift from a virus-centric perspective to one that embraces the full spectrum of virus-host interactions and cellular signaling events that determine disease outcome. This change has been brought about by the increasing use and expanding scope of high-throughput molecular profiling and computational biology, which together fuel discovery in systems biology. In this review, we show how these approaches have revealed an uncontrolled inflammatory response as a contributor to the extreme virulence of the 1918 pandemic and avian H5N1 viruses, and how this response differs from that induced by the 2009 H1N1 viruses responsible for the most recent influenza pandemic. We also discuss how new animal models, such as the Collaborative Cross mouse systems genetics platform, are key to the necessary systematic investigation of the impact of host genetics on infection outcome, how genome-wide RNAi screens have identified hundreds of cellular factors involved in viral replication, and how systems biology approaches are making possible the rational design of new drugs and vaccines against an ever-evolving respiratory virus.
机译:流行性感冒病毒的研究最近已经从以病毒为中心的观点转变为涵盖确定疾病结果的全范围病毒-宿主相互作用和细胞信号事件的观点。这种变化是由于高通量分子分析和计算生物学的日益广泛使用和扩大而引起的,这些共同推动了系统生物学中的发现。在这篇综述中,我们展示了这些方法如何揭示了不受控制的炎症反应,从而导致了1918年大流行和禽类H5N1病毒的极端毒力,以及这种反应与2009年H1N1病毒引起的最新流感有何不同大流行。我们还将讨论新的动物模型,例如协作十字交叉小鼠系统遗传学平台如何对宿主遗传学对感染结果的影响进行必要的系统研究的关键,全基因组RNAi筛查如何识别涉及病毒的数百种细胞因子复制,以及系统生物学方法如何使针对不断发展的呼吸道病毒的新药和疫苗的合理设计成为可能。

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