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β-丙内酯对柯萨奇病毒A16的灭活作用诱导病毒衣壳的结构改变和表面修饰。

Beta-Propiolactone Inactivation of Coxsackievirus A16 Induces Structural Alteration and Surface Modification of Viral Capsids.

作者信息

Fan Chen, Ye Xiaohua, Ku Zhiqiang, Kong Liangliang, Liu Qingwei, Xu Cong, Cong Yao, Huang Zhong

机构信息

National Center for Protein Science Shanghai, State Key Laboratory of Molecular Biology, CAS Center for Excellence in Molecular Cell Science, Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences, University of Chinese Academy of Sciences, Shanghai, China.

Vaccine Research Center, CAS Key Laboratory of Molecular Virology & Immunology, Institut Pasteur of Shanghai, Chinese Academy of Sciences, Shanghai, China.

出版信息

J Virol. 2017 Mar 29;91(8). doi: 10.1128/JVI.00038-17. Print 2017 Apr 15.

Abstract

Beta-propiolactone (BPL) is an inactivating agent that is widely used in the vaccine industry. However, its effects on vaccine protein antigens and its mechanisms of action remain poorly understood. Here we present cryo-electron microscopy (cryo-EM) structures of BPL-treated coxsackievirus A16 (CVA16) mature virions and procapsids at resolutions of 3.9 Å and 6.5 Å, respectively. Notably, both particles were found to adopt an expanded conformation resembling the 135S-like uncoating intermediate, with characteristic features including an opened 2-fold channel, the externalization of the N terminus of VP1 capsid protein, and the absence of pocket factor. However, major neutralizing epitopes are very well preserved on these particles. Further biochemical analyses revealed that BPL treatment impairs the abilities of CVA16 particles to bind to the attachment receptor heparan sulfate and to a conformation-dependent monoclonal antibody in a BPL dose-dependent manner, indicating that BPL is able to modify surface-exposed amino acid residues. Taken together, our results demonstrate that BPL treatment may induce alteration of the overall structure and surface properties of a nonenveloped viral capsid, thus revealing a novel mode of action of BPL. Beta-propiolactone (BPL) is commonly used as an inactivating reagent to produce viral vaccines. It is recognized that BPL inactivates viral infectivity through modification of viral nucleic acids. However, its effect on viral proteins remains largely unknown. Here, we present high-resolution cryo-EM structures of BPL-treated coxsackievirus A16 (CVA16) mature virions and procapsids, which reveals an expanded overall conformation and characteristic features that are typical for the 135S-like uncoating intermediate. We further show that the BPL concentration affects the binding of inactivated CVA16 particles to their receptor/antibody. Thus, BPL treatment can alter the overall structure and surface properties of viral capsids, which may lead to antigenic and immunogenic variations. Our findings provide important information for future development of BPL-inactivated vaccines.

摘要

β-丙内酯(BPL)是一种灭活剂,在疫苗行业中广泛使用。然而,其对疫苗蛋白抗原的作用及其作用机制仍知之甚少。在此,我们展示了经BPL处理的柯萨奇病毒A16(CVA16)成熟病毒粒子和原衣壳的冷冻电子显微镜(cryo-EM)结构,分辨率分别为3.9 Å和6.5 Å。值得注意的是,发现这两种颗粒均呈现出类似135S样脱壳中间体的扩展构象,其特征包括开放的2倍通道、VP1衣壳蛋白N端的外化以及口袋因子的缺失。然而,这些颗粒上的主要中和表位保存得非常完好。进一步的生化分析表明,BPL处理以BPL剂量依赖性方式损害CVA16颗粒与附着受体硫酸乙酰肝素以及构象依赖性单克隆抗体结合的能力,表明BPL能够修饰表面暴露的氨基酸残基。综上所述,我们的结果表明,BPL处理可能诱导无包膜病毒衣壳的整体结构和表面性质发生改变,从而揭示了BPL的一种新作用模式。β-丙内酯(BPL)通常用作生产病毒疫苗的灭活试剂。人们认识到,BPL通过修饰病毒核酸来灭活病毒感染性。然而,其对病毒蛋白的影响在很大程度上仍不清楚。在此,我们展示了经BPL处理的柯萨奇病毒A16(CVA16)成熟病毒粒子和原衣壳的高分辨率冷冻电子显微镜结构,揭示了一种扩展的整体构象以及135S样脱壳中间体典型的特征。我们进一步表明,BPL浓度会影响灭活的CVA16颗粒与其受体/抗体的结合。因此,BPL处理可改变病毒衣壳的整体结构和表面性质,这可能导致抗原性和免疫原性变化。我们的发现为未来BPL灭活疫苗的开发提供了重要信息。

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