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首页> 外文期刊>MBio >Cryo-electron Microscopy Structures of Chimeric Hemagglutinin Displayed on a Universal Influenza Vaccine Candidate
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Cryo-electron Microscopy Structures of Chimeric Hemagglutinin Displayed on a Universal Influenza Vaccine Candidate

机译:通用流感疫苗候选者上显示的嵌合血凝素的低温电子显微镜结构。

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ABSTRACT Influenza viruses expressing chimeric hemagglutinins (HAs) are important tools in the quest for a universal vaccine. Using cryo-electron tomography, we have determined the structures of a chimeric HA variant that comprises an H1 stalk and an H5 globular head domain (cH5/1 HA) in native and antibody-bound states. We show that cH5/1 HA is structurally different from native HA, displaying a 60° rotation between the stalk and head groups, leading to a novel and unexpected “open” arrangement of HA trimers. cH5/1N1 viruses also display higher glycoprotein density than pH1N1 or H5N1 viruses, but despite these differences, antibodies that target either the stalk or head domains of hemagglutinins still bind to cH5/1 HA with the same consequences as those observed with native H1 or H5 HA. Our results show that a large range of structural plasticity can be tolerated in the chimeric spike scaffold without disrupting structural and geometric aspects of antibody binding. Importance Chimeric hemagglutinin proteins are set to undergo human clinical trials as a universal influenza vaccine candidate, yet no structural information for these proteins is available. Using cryo-electron tomography, we report the first three-dimensional (3D) visualization of chimeric hemagglutinin proteins displayed on the surface of the influenza virus. We show that, unexpectedly, the chimeric hemagglutinin structure differs from those of naturally occurring hemagglutinins by displaying a more open head domain and a dramatically twisted head/stalk arrangement. Despite this unusual spatial relationship between head and stalk regions, virus preparations expressing the chimeric hemagglutinin are fully infectious and display a high glycoprotein density, which likely helps induction of a broadly protective immune response. IMPORTANCE Chimeric hemagglutinin proteins are set to undergo human clinical trials as a universal influenza vaccine candidate, yet no structural information for these proteins is available. Using cryo-electron tomography, we report the first three-dimensional (3D) visualization of chimeric hemagglutinin proteins displayed on the surface of the influenza virus. We show that, unexpectedly, the chimeric hemagglutinin structure differs from those of naturally occurring hemagglutinins by displaying a more open head domain and a dramatically twisted head/stalk arrangement. Despite this unusual spatial relationship between head and stalk regions, virus preparations expressing the chimeric hemagglutinin are fully infectious and display a high glycoprotein density, which likely helps induction of a broadly protective immune response.
机译:摘要表达嵌合血凝素(HAs)的流感病毒是寻求通用疫苗的重要工具。使用低温电子断层扫描,我们已经确定了嵌合HA变体的结构,该变体包含处于天然和抗体结合状态的H1茎和H5球形头部结构域(cH5 / 1 HA)。我们显示cH5 / 1 HA在结构上与天然HA不同,在茎部和头部之间表现出60°的旋转,从而导致HA三聚体出现了新颖且出乎意料的“开放式”排列。 cH5 / 1N1病毒还显示出比pH1N1或H5N1病毒更高的糖蛋白密度,但是尽管有这些差异,但靶向血凝素茎或头部结构域的抗体仍与cH5 / 1 HA结合,其后果与天然H1或H5观察到的相同哈。我们的结果表明,在嵌合刺突支架中可以耐受大范围的结构可塑性,而不会破坏抗体结合的结构和几何方面。重要性嵌合血凝素蛋白有望作为一种通用的流感疫苗候选者进行人类临床试验,但是尚无这些蛋白的结构信息。使用冷冻电子断层扫描,我们报告显示在流感病毒表面上的嵌合血凝素蛋白的第一个三维(3D)可视化。我们表明,出乎意料的是,嵌合血凝素结构与天然血凝素结构不同,它表现出更开放的头部结构和剧烈扭曲的头部/茎部排列。尽管头和茎区域之间存在这种不寻常的空间关系,但表达嵌合血凝素的病毒制剂具有充分的感染力,并显示出高糖蛋白密度,这可能有助于诱导广泛的保护性免疫应答。重要信息嵌合血凝素蛋白有望作为一种通用的流感疫苗候选者进行人类临床试验,但是尚无这些蛋白的结构信息。使用冷冻电子断层扫描,我们报告显示在流感病毒表面上的嵌合血凝素蛋白的第一个三维(3D)可视化。我们表明,出乎意料的是,嵌合血凝素结构与天然血凝素结构不同,它表现出更开放的头部结构和剧烈扭曲的头部/茎部排列。尽管头和茎区域之间存在这种不寻常的空间关系,但表达嵌合血凝素的病毒制剂具有充分的感染力,并显示出高糖蛋白密度,这可能有助于诱导广泛的保护性免疫应答。

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