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Multi-target Parallel Processing Approach for Gene-to-structure Determination of the Influenza Polymerase PB2 Subunit

机译:多目标并行处理方法用于确定流感聚合酶PB2亚基的基因结构

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摘要

Pandemic outbreaks of highly virulent influenza strains can cause widespread morbidity and mortality in human populations worldwide. In the United States alone, an average of 41,400 deaths and 1.86 million hospitalizations are caused by influenza virus infection each year 1. Point mutations in the polymerase basic protein 2 subunit (PB2) have been linked to the adaptation of the viral infection in humans 2. Findings from such studies have revealed the biological significance of PB2 as a virulence factor, thus highlighting its potential as an antiviral drug target.The structural genomics program put forth by the National Institute of Allergy and Infectious Disease (NIAID) provides funding to Emerald Bio and three other Pacific Northwest institutions that together make up the Seattle Structural Genomics Center for Infectious Disease (SSGCID). The SSGCID is dedicated to providing the scientific community with three-dimensional protein structures of NIAID category A-C pathogens. Making such structural information available to the scientific community serves to accelerate structure-based drug design.Structure-based drug design plays an important role in drug development. Pursuing multiple targets in parallel greatly increases the chance of success for new lead discovery by targeting a pathway or an entire protein family. Emerald Bio has developed a high-throughput, multi-target parallel processing pipeline (MTPP) for gene-to-structure determination to support the consortium. Here we describe the protocols used to determine the structure of the PB2 subunit from four different influenza A strains.
机译:高毒力流感毒株的大流行暴发可能导致全世界人群普遍发病和死亡。仅在美国,每年 1 流感病毒感染平均造成41,400人死亡和186万住院。聚合酶碱性蛋白2亚基(PB2)的点突变与人类 2 病毒感染的适应性有关。这些研究的发现揭示了PB2作为一种毒力因子的生物学意义,从而突出了其作为抗病毒药物靶标的潜力。美国国家过敏和传染病研究所(NIAID)提出的结构基因组学计划为Emerald Bio和另外三个西北太平洋机构共同组成了西雅图传染病结构基因组学中心(SSGCID)。 SSGCID致力于为科学界提供NIAID A-C类病原体的三维蛋白质结构。将此类结构信息提供给科学界有助于加快基于结构的药物设计。基于结构的药物设计在药物开发中起着重要作用。通过靶向途径或整个蛋白家族,并行追求多个靶标极大地增加了成功发现新线索的机会。 Emerald Bio开发了高通量,多目标并行处理管道(MTPP),用于基因到结构的测定,以支持该财团。在这里,我们描述了用于从四种不同的甲型流感病毒株确定PB2亚基结构的方案。

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