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首页> 外文期刊>Virology Journal >Effects of amino acid substitutions in the VP2 B-C loop on antigenicity and pathogenicity of serotype Asia1 foot-and-mouth disease virus
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Effects of amino acid substitutions in the VP2 B-C loop on antigenicity and pathogenicity of serotype Asia1 foot-and-mouth disease virus

机译:VP2 B-C环中氨基酸置换对血清型Asia1口蹄疫病毒抗原性和致病性的影响

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Background Foot-and-mouth disease virus (FMDV) exhibits a high degree of antigenic variability. Studies of the antigenic diversity and determination of amino acid changes involved in this diversity are important to the design of broadly protective new vaccines. Although extensive studies have been carried out to explore the molecular basis of the antigenic variation of serotype O and serotype A FMDV, there are few reports on Asia1 serotype FMDV. Methods Two serotype Asia1 viruses, Asia1/YS/CHA/05 and Asia1/1/YZ/CHA/06, which show differential reactivity to the neutralizing monoclonal antibody (nMAb) 1B4, were subjected to sequence comparison. Then a reverse genetics system was used to generate mutant versions of Asia1/YS/CHA/05 followed by comparative analysis of the antigenicity, growth property and pathogenicity in the suckling mice. Results Three amino acid differences were observed when the structural protein coding sequences of Asia1/1/YZ/CHA/06 were compared to that of Asia1/YS/CHA/05. Site-directed mutagenesis and Immunofluorescence analysis showed that the amino acid substitution in the B-C loop of the VP2 protein at position 72 is responsible for the antigenic difference between the two Asia1 FMDV strains. Furthermore, alignment of the amino acid sequences of VP2 proteins from serotype Asia1 FMDV strains deposited in GenBank revealed that most of the serotype Asia1 FMDV strains contain an Asn residue at position 72 of VP2. Therefore, we constructed a mutant virus carrying an Asp-to-Asn substitution at position 72 and named it rD72N. Our analysis shows that the Asp-to-Asn substitution inhibited the ability of the rD72N virus to react with the MAb 1B4 in immunofluorescence and neutralization assays. In addition, this substitution decreased the growth rate of the virus in BHK-21 cells and decreased the virulence of the virus in suckling mice compared with the Asia1/YS/CHA/05 parental strain. Conclusions These results suggest that variations in domains other than the hyper variable VP1 G-H loop (amino acid 140 to 160) are relevant to the antigenic diversity of FMDV. In addition, amino acid substitutions in the VP2 influenced replicative ability and virulence of the virus. Thus, special consideration should be given to the VP2 protein in research on structure-function relationships and in the development of an FMDV vaccine.
机译:背景技术口蹄疫病毒(FMDV)表现出高度的抗原变异性。抗原多样性的研究以及确定这种多样性涉及的氨基酸变化对于设计具有广泛保护性的新疫苗很重要。尽管已经进行了广泛的研究来探索血清型O和血清型FMDV的抗原变异的分子基础,但是关于Asia1血清型FMDV的报道却很少。方法对两种血清型Asia1病毒,Asia1 / YS / CHA / 05和Asia1 / 1 / YZ / CHA / 06,与中和性单克隆抗体(nMAb)1B4具有不同的反应性,进行序列比较。然后,使用反向遗传学系统生成Asia1 / YS / CHA / 05的突变体版本,然后对乳鼠的抗原性,生长特性和致病性进行比较分析。结果将Asia1 / 1 / YZ / CHA / 06的结构蛋白编码序列与Asia1 / YS / CHA / 05的结构蛋白编码序列进行比较,发现三个氨基酸差异。定点诱变和免疫荧光分析表明,VP2蛋白在72位的B-C环中的氨基酸取代是造成这两个Asia1 FMDV菌株之间抗原性差异的原因。此外,来自GenBank的血清型Asia1 FMDV菌株VP2蛋白的氨基酸序列比对揭示,大多数血清型Asia1 FMDV菌株在VP2的72位含有Asn残基。因此,我们构建了在第72位携带Asp到Asn取代的突变病毒,并将其命名为rD72N。我们的分析表明,在免疫荧光和中和测定中,Asp取代Asn会抑制rD72N病毒与MAb 1B4反应的能力。此外,与Asia1 / YS / CHA / 05亲本菌株相比,这种取代降低了BHK-21细胞中病毒的生长速率,并降低了在乳鼠中病毒的毒性。结论这些结果表明,除了超可变VP1 G-H环(氨基酸140至160)以外,其他域的变异与FMDV的抗原多样性有关。此外,VP2中的氨基酸取代影响病毒的复制能力和毒力。因此,在研究结构-功能关系和开发FMDV疫苗时应特别考虑VP2蛋白。

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