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Pandemic Avian Influenza and Intra/Interhaemagglutinin Subtype Electrostatic Variation among Viruses Isolated from Avian Mammalian and Human Hosts

机译:从禽哺乳动物和人类宿主分离的病毒之间的大流行禽流感和血细胞内/血细胞凝集素亚型静电变异

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摘要

Host jump can result in deadly pandemic events when avian influenza A viruses broaden their host specificity and become able to infect mammals, including humans. Haemagglutinin—the major capsid protein in influenza A viruses—is subjected to high rate mutations, of which several occur at its “head”: the receptor-binding domain that mediates specific binding to host cell receptors. Such surface-changing mutations may lead to antigenically novel influenza A viruses hence in pandemics by host jump and in vaccine escape by antigenic drift. Changes in haemagglutinin surface electrostatics have been recently associated with antigenic drift and with clades evolution and spreading in H5N1 and H9N2 viruses. We performed a comparative analysis of haemagglutinin surface electrostatics to investigate clustering and eventual fingerprints among representative pandemic (H5 and H7) and nonpandemic (H4 and H6) avian influenza viral subtypes. We observed preferential sorting of viruses isolated from mammalian/human hosts among these electrostatic clusters of a subtype; however, sorting was not “100% specific” to the different clusters. Therefore, electrostatic fingerprints can help in understanding, but they cannot explain alone the host jumping mechanism.
机译:当甲型禽流感病毒扩大其宿主特异性并能够感染包括人类在内的哺乳动物时,寄主跳跃会导致致命的大流行性疾病。血凝素(甲型流感病毒中的主要衣壳蛋白)经历了高速率突变,其中一些突变发生在其“头部”:介导与宿主细胞受体特异性结合的受体结合域。这种表面变化的突变可能会导致抗原性新型A型流感病毒,因此会因宿主跳跃而在大流行中以及由于抗原性漂移而导致疫苗逃逸。最近,血凝素表面静电的变化与抗原漂移,进化枝进化和在H5N1和H9N2病毒中的扩散有关。我们对血凝素表面静电进行了比较分析,以研究代表性大流行(H5和H7)和非大流行(H4和H6)禽流感病毒亚型之间的聚集和最终指纹。我们观察到从亚型的这些静电簇中分离自哺乳动物/人类宿主的病毒的优先排序。但是,排序并不是针对不同集群的“ 100%特定”。因此,静电指纹可以帮助理解,但不能单独解释宿主跳跃机制。

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  • 年(卷),期 -1(2018),-1
  • 年度 -1
  • 页码 3870508
  • 总页数 10
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