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Closing the door on flaviviruses: entry as a target for antiviral drug design.

机译:关闭黄病毒的大门:将其作为抗病毒药物设计的目标。

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With the emergence and rapid spread of West Nile virus in the United States since 1999, and the 50-100 million infections per year caused by dengue virus globally, the threat of flaviviruses as re-emerging human pathogens has become a reality. To support the efforts that are currently being pursued to develop effective vaccines against these viruses, researchers are also actively pursuing the development of small molecule compounds that target various aspects of the virus life cycle. Recent advances in the structural characterization of the flaviviruses have provided a strong foundation towards these efforts. These studies have provided the pseudo-atomic structures of virions from several members of the genus as well as atomic resolution structures of several viral proteins. Most importantly, these studies have highlighted specific structural rearrangements that occur within the virion that are necessary for the virus to complete its life cycle. These rearrangements occur when the virus must transitionfrom immature, to mature, to fusion-active states and rely heavily on the conformational flexibility of the envelope (E) protein that forms the outer glycoprotein shell of the virus. Analysis of these conformational changes can suggest promising targets for structure-based antiviral design. For instance, by targeting the flexibility of the E protein, it might be possible to inhibit required rearrangements of this protein and trap the virus in a specific state. This would interfere with a productive flaviviral infection. This review presents a structural perspective of the flavivirus life cycle and focuses on the role of the E protein as an opportune target for structure-based antiviral drug design.
机译:自1999年以来,随着西尼罗河病毒在美国的出现和迅速传播,以及全球每年由登革热病毒引起的50-100百万感染,黄病毒作为重新出现的人类病原体的威胁已成为现实。为了支持当前为开发针对这些病毒的有效疫苗而进行的努力,研究人员还积极追求针对病毒生命周期各个方面的小分子化合物的开发。黄病毒的结构表征的最新进展为这些努力提供了坚实的基础。这些研究提供了来自该属几个成员的病毒体的假原子结构,以及几种病毒蛋白的原子分辨结构。最重要的是,这些研究突出了病毒体内部发生的特定结构重排,这对于病毒完成其生命周期是必不可少的。当病毒必须从未成熟状态过渡到成熟状态并变为融合活性状态,并且严重依赖形成病毒外糖蛋白外壳的包膜(E)蛋白的构象柔韧性时,就会发生这些重排。这些构象变化的分析可以建议基于结构的抗病毒设计的有希望的目标。例如,通过靶向E蛋白的柔韧性,可能可以抑制E蛋白的所需重排并将病毒以特定状态捕获。这将干扰生产性黄病毒感染。这篇综述介绍了黄病毒生命周期的结构性观点,并着重介绍了E蛋白作为基于结构的抗病毒药物设计的合适靶标的作用。

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