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鉴定A型口蹄疫病毒VP1蛋白上的一个构象中和表位。

Identification of a conformational neutralizing epitope on the VP1 protein of type A foot-and-mouth disease virus.

作者信息

Liu Wenming, Yang Baolin, Wang Mingxia, Wang Haiwei, Yang Decheng, Ma Wenge, Zhou Guohui, Yu Li

机构信息

Division of Livestock Infectious Diseases, State Key Laboratory of Veterinary Biotechnology, Harbin Veterinary Research Institute, Chinese Academy of Agricultural Sciences, NO. 678 Haping Road Xiangfang District, Harbin 150069, PR China.

Institute of Veterinary Medicine, Xinjiang Academy of Animal Science, 151 Eastern Kelamayi Street, Urumqi 830000, PR China.

出版信息

Res Vet Sci. 2017 Dec;115:374-381. doi: 10.1016/j.rvsc.2017.07.001. Epub 2017 Jul 8.

Abstract

Foot-and-mouth disease (FMD) caused by foot-and-mouth disease virus (FMDV), is a highly contagious infectious disease that affects domestic and wild cloven-hoofed animals worldwide. In recent years, outbreaks of serotype A FMD have occurred in many countries. High-affinity neutralizing antibodies against a conserved epitope could provide protective immunity against diverse subtypes of FMDV serotype A and protect against future pandemics. In this study, we generated a serotype A FMDV-specific potent neutralizing monoclonal antibody (MAb), 6C9, which recognizes a conformation-dependent epitope. MAb 6C9 potently neutralized FMDV A/XJBC/CHA/2010 with a 50% neutralization titer (NT) of 4096. Screening of a phage-displayed random 12-mer peptide library revealed that MAb 6C9 bound to phages displaying the consensus motif YxxPxGDLG, which is highly homologous to the YxxPxxxxxGDLG motif found in the serotype A FMDV virus-encoded structural protein VP1. To further verify the authentic epitope recognized by MAb 6C9, two FMDV A/XJBC/CHA/2010 mutant viruses, P138A and G144A, were generated using a reverse genetic system. Subsequent micro-neutralization assays and double-antibody sandwich (DAS) ELISA analyses revealed that the Pro and Gly residues of the conformational epitope that are recognized by 6C9 are important for MAb 6C9 binding. Importantly, the epitope YxxPxxxxxGDLG was highly conserved among different topotypes of serotype A FMDV strains in a sequence alignment analysis. Thus, the results of this study could have potential applications in the development of novel epitope-based vaccines and suitable a MAb-based diagnostic method for the detection of serotype A FMDV and the quantitation of antibodies against this serotype.

摘要

口蹄疫病毒(FMDV)引起的口蹄疫(FMD)是一种高度传染性的传染病,影响着全球的家养和野生偶蹄动物。近年来,许多国家都发生了A型口蹄疫疫情。针对保守表位的高亲和力中和抗体可提供针对A型FMDV不同亚型的保护性免疫,并预防未来的大流行。在本研究中,我们制备了一种A型FMDV特异性强效中和单克隆抗体(MAb)6C9,它识别一个构象依赖性表位。MAb 6C9能有效中和FMDV A/XJBC/CHA/2010,50%中和滴度(NT)为4096。对噬菌体展示的随机12肽库进行筛选,结果显示MAb 6C9与展示共有基序YxxPxGDLG的噬菌体结合,该基序与A型FMDV病毒编码的结构蛋白VP1中发现的YxxPxxxxxGDLG基序高度同源。为了进一步验证MAb 6C9识别的真实表位,利用反向遗传系统构建了两种FMDV A/XJBC/CHA/2010突变病毒P138A和G144A。随后的微量中和试验和双抗体夹心(DAS)ELISA分析表明,6C9识别的构象表位中的Pro和Gly残基对MAb 6C9的结合很重要。重要的是,在序列比对分析中,表位YxxPxxxxxGDLG在A型FMDV毒株的不同拓扑型中高度保守。因此,本研究结果在新型基于表位的疫苗开发以及适用于检测A型FMDV和定量针对该血清型抗体的基于单克隆抗体的诊断方法开发中可能具有潜在应用价值。

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