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Visualization of Alternative Functional Configurations of Influenza Virus Hemagglutinin Facilitates Rapid Selection of Complementing Vaccines in Emergency Situations

机译:可视化流感病毒血凝素的替代功能配置有助于在紧急情况下快速选择补充疫苗

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摘要

Successful immunization against avian influenza virus (AIV) requires eliciting an adequate polyclonal response to AIV hemagglutinin (HA) subunit 1 (HA1) epitopes. Outbreaks of highly-pathogenic (HP) AIV subtype H5N1 can occur in vaccinated flocks in many endemic areas. Protection against emerging AIV is partly hindered by the limitations of vaccine production and transport, the use of leaky vaccines, and the use of multiple, and often antigenically-diverse, vaccines. It was hypothesized that the majority of alternative functional configurations (AFC) within the AIV HA1 can be represented by the pool of vaccine seed viruses currently in production because only a finite number of AFC are possible within each substructure of the molecule. Therefore, combinations of commercial vaccines containing complementing structural units (CSU) to each HA1 substructure can elicit responses to the totality of a given emerging AIV HA1 substructure isoforms. Analysis of homology-based 3D models of vaccine seed and emerging viruses facilitated the definition of HA1 AFC isoforms. CSU-based plots were used to predict which commercial vaccine combinations could have been used to cover nine selected AFC isoforms on recent Egyptian HP AIV H5N1 outbreak viruses. It is projected that expansion of the vaccine HA1 3D model database will improve international emergency responses to AIV.
机译:要成功免疫禽流感病毒(AIV),需要引起对AIV血凝素(HA)亚基1(HA1)表位的充分多克隆反应。高致病性(HP)AIV亚型H5N1的暴发可能发生在许多流行地区的疫苗接种鸡群中。疫苗生产和运输的局限性,泄漏疫苗的使用以及多种(通常是抗原多样的)疫苗的使用在一定程度上阻碍了针对新兴AIV的保护。假设AIV HA1中的大多数替代功能结构(AFC)可以由当前正在生产的疫苗种子病毒库来表示,因为在分子的每个亚结构内只有有限数量的AFC是可能的。因此,对每个HA1亚结构包含互补结构单元(CSU)的商业疫苗的组合可引起对给定的新兴AIV HA1亚结构同种型的总体响应。基于同源性的疫苗种子和新兴病毒3D模型的分析促进了HA1 AFC亚型的定义。基于CSU的地块用于预测哪些商业疫苗组合可以用于覆盖最近埃及HP AIV H5N1暴发病毒的九种选定的AFC亚型。预计疫苗HA1 3D模型数据库的扩展将改善国际上对AIV的应急响应。

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