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Structural vaccinology: structure-based design of influenza A virus hemagglutinin subtype-specific subunit vaccines

机译:结构疫苗学:基于结构的甲型流感病毒血凝素亚型特异性亚单位疫苗的设计

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摘要

There is a great need for new vaccine development against influenza A viruses due to the drawbacks of traditional vaccines that are mainly prepared using embryonated eggs. The main component of the current split influenza A virus vaccine is viral hemagglutinin (HA) which induces a strong antibody-mediated immune response. To develop a modern vaccine against influenza A viruses, the current research has been focused on the universal vaccines targeting viral M2, NP and HA proteins. Crystallographic studies have shown that HA forms a trimer embedded on the viral envelope surface, and each monomer consists of a globular head (HA1) and a “rod-like” stalk region (HA2), the latter being more conserved among different HA subtypes and being the primary target for universal vaccines. In this study, we rationally designed the HA head based on the crystal structure of the 2009-pandemic influenza A (H1N1) virus HA as a model, tested its immunogenicity in mice, solved its crystal structure and further examined its immunological characteristics. The results show that the HA globular head can be easily prepared by in vitro refolding in an E. coli expression system, which maintains its intact structure and allows for the stimulation of a strong immune response. Together with recent reports on some similar HA globular head preparations we conclude that structure-based rational design of the HA globular head can be used for subtype-specific vaccines against influenza viruses.
机译:由于主要使用胚卵制备的传统疫苗的缺点,因此迫切需要开发针对甲型流感病毒的新疫苗。目前的甲型流感病毒分裂疫苗的主要成分是病毒血凝素(HA),可诱导强烈的抗体介导的免疫反应。为了开发抗甲型流感病毒的现代疫苗,当前的研究集中在针对病毒M2,NP和HA蛋白的通用疫苗上。晶体学研究表明,HA形成嵌入病毒包膜表面的三聚体,并且每个单体均由球状头部(HA1)和“杆状”茎杆区域(HA2)组成,后者在不同的HA亚型中更保守,是通用疫苗的主要目标。在这项研究中,我们以2009年大流行性甲型流感(H1N1)病毒HA的晶体结构为模型,合理设计了HA头,测试了其在小鼠中的免疫原性,解决了其晶体结构,并进一步检查了其免疫学特性。结果表明,通过在大肠杆菌表达系统中进行体外重折叠,可以轻松制备HA球状头,该系统可以保持其完整结构并可以刺激强烈的免疫反应。结合有关某些类似的HA球状头部制剂的最新报道,我们得出结论,HA球状头部的基于结构的合理设计可用于针对亚型流感病毒的疫苗。

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