State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics, National Institute of Diagnostics and Vaccine Development in Infectious Diseases, School of Public Health, Xiamen University, Xiamen, 361102, PR China.
Department of Research & Development Beijing Wantai Biological Pharmacy Enterprise Co., Ltd., Beijing, 102206, PR China.
Nat Commun. 2017 Sep 11;8(1):505. doi: 10.1038/s41467-017-00477-9.
Coxsackievirus A6 (CVA6) has recently emerged as a major cause of hand, foot and mouth disease in children worldwide but no vaccine is available against CVA6 infections. Here, we demonstrate the isolation of two forms of stable CVA6 particles-procapsid and A-particle-with excellent biochemical stability and natural antigenicity to serve as vaccine candidates. Despite the presence (in A-particle) or absence (in procapsid) of capsid-RNA interactions, the two CVA6 particles have essentially identical atomic capsid structures resembling the uncoating intermediates of other enteroviruses. Our near-atomic resolution structure of CVA6 A-particle complexed with a neutralizing antibody maps an immune-dominant neutralizing epitope to the surface loops of VP1. The structure-guided cell-based inhibition studies further demonstrate that these loops could serve as excellent targets for designing anti-CVA6 vaccines.Coxsackievirus A6 (CVA6) causes hand, foot and mouth disease in children. Here the authors present the CVA6 procapsid and A-particle cryo-EM structures and identify an immune-dominant neutralizing epitope, which can be exploited for vaccine development.
Coxsackievirus A6 (CVA6) 最近成为全球儿童手足口病的主要病因,但目前尚无针对 CVA6 感染的疫苗。本文作者展示了两种稳定的 CVA6 颗粒——原壳粒和 A 颗粒的分离,它们具有极好的生化稳定性和天然抗原性,可作为疫苗候选物。尽管 A 颗粒中存在(capsid-RNA 相互作用)或不存在(原壳粒)衣壳 RNA 相互作用,但这两种 CVA6 颗粒具有基本相同的原子衣壳结构,类似于其他肠道病毒的脱壳中间体。本文作者还解析了 CVA6 A 颗粒与中和抗体复合物的近原子分辨率结构,将一个免疫显性中和表位映射到 VP1 的表面环上。基于结构的细胞抑制研究进一步表明,这些环可作为设计抗 CVA6 疫苗的理想靶点。Coxsackievirus A6 (CVA6) 可引起儿童手足口病。本文作者呈现了 CVA6 原壳粒和 A 颗粒的 cryo-EM 结构,并鉴定出一个免疫显性中和表位,可用于疫苗开发。