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证据表明,在口蹄疫病毒 A 型 G-H 和 B-C 环内的氨基酸替换的联合作用导致血清学异质性。

Evidence of combined effect of amino acid substitutions within G-H and B-C loops of VP1 conferring serological heterogeneity in foot-and-mouth disease virus serotype A.

机构信息

Department of Microbiology, University of Dhaka, Dhaka, Bangladesh.

Department of Microbiology, Jashore University of Science and Technology, Khulna, Bangladesh.

出版信息

Transbound Emerg Dis. 2021 Mar;68(2):375-384. doi: 10.1111/tbed.13687. Epub 2020 Jul 5.

Abstract

Foot-and-mouth disease virus (FMDV) serotype A exhibits a higher degree of genetic and antigenic diversity resulting in frequent vaccine failure due to serological mismatch between the vaccine and heterologous strains. Currently, knowledge on the molecular basis of antigenic relationships among the FMDVs is limited; nevertheless, intratype antigenic variation due to mutation(s) is widely considered as the main hurdle to appropriate FMD vaccine development. Here, we studied genetic and antigenic variations of four FMDV serotype A isolates, BAN/GA/Sa-197/2013 (BAN-197), BAN/CH/Sa-304/2016 (BAN-304), BAN/DH/Sa-307/2016 (BAN-307) and BAN/DH/Sa-310/2017 (BAN-310) circulating in Bangladesh during 2013-2017. Initially, antigenic relationships (r -values) of the field isolates were evaluated by the two-dimensional microneutralization test (2D-MNT) using the hyperimmune antisera raised in cattle against the vaccine strain, BAN-304. Interesingly, the results showed protective serological cross-reactivity (r -values > 0.4) between the vaccine strain and the field isolates, BAN-307 and BAN-310, except BAN-197 that substantially mismatched (r  = 0.129 ± 0.043) with the BAN-304. Although VP1-based phylogeny grouped all the isolates within the same sublineage C (a subgroup of VP3 variant) under the lineage A/ASIA/G-VII, strikingly, computational analyses of the viral capsid proteins demonstrated significant deviation at the VP1 G-H loop of BAN-197 from the vaccine strain, while VP(2-4) of both isolates were structurally conserved. To bridge the gap of how the distortion of the G-H loop and consequent antigenic hetergeneity occurred in BAN-197, we performed in silico combinatorial substitutions of the VP1 mutant amino acids (aa) of BAN-197 with the respective residues in BAN-304. Remarkably, our analyses revealed that two substitutions of distantly located aa at B-C (T48I:threonine → isoleucine) and G-H (A143V:alanine → valine) loops, in combination, distorted the VP1 G-H loop. Overall, this work contributes to understanding the molecular basis of antigenic relationships operating in serotype A FMDVs and the selection of suitable vaccine strain(s) for effective prophylaxis of FMD based on VP1-based analyses.

摘要

口蹄疫病毒(FMDV)血清型 A 表现出更高程度的遗传和抗原多样性,由于疫苗与异源株之间的血清学不匹配,导致疫苗频繁失效。目前,对口蹄疫病毒之间抗原关系的分子基础的了解有限;然而,由于突变而导致的同种型抗原变异被广泛认为是适当的口蹄疫疫苗开发的主要障碍。在这里,我们研究了 2013-2017 年在孟加拉国流行的 4 种口蹄疫病毒血清型 A 分离株 BAN/GA/Sa-197/2013(BAN-197)、BAN/CH/Sa-304/2016(BAN-304)、BAN/DH/Sa-307/2016(BAN-307)和 BAN/DH/Sa-310/2017(BAN-310)的遗传和抗原变异。最初,使用针对疫苗株 BAN-304 产生的牛高免血清,通过二维微量中和试验(2D-MNT)评估田间分离株的抗原关系(r 值)。有趣的是,结果显示疫苗株与田间分离株 BAN-307 和 BAN-310 之间存在保护性血清学交叉反应性(r 值>0.4),而 BAN-197 与 BAN-304 显著不匹配(r =0.129±0.043)。尽管基于 VP1 的系统发育将所有分离株归为同一亚系 C(VP3 变体的一个亚群)下的 A/ASIA/G-VII 谱系内,但令人惊讶的是,病毒衣壳蛋白的计算分析表明,BAN-197 的 VP1 G-H 环的显著偏离疫苗株,而两个分离株的 VP(2-4)结构上是保守的。为了了解 BAN-197 中 G-H 环的扭曲和随之而来的抗原异质性是如何发生的,我们对 BAN-197 的 VP1 突变氨基酸(aa)进行了计算机组合替换,并用 BAN-304 的相应残基进行了替换。值得注意的是,我们的分析表明,B-C(T48I:苏氨酸→异亮氨酸)和 G-H(A143V:丙氨酸→缬氨酸)环中两个远距离位置的 aa 替换相结合,扭曲了 VP1 G-H 环。总的来说,这项工作有助于理解在口蹄疫病毒血清型 A 中起作用的抗原关系的分子基础,以及基于 VP1 分析为有效预防口蹄疫选择合适的疫苗株。

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