Immunoinformatics-based identification of highly conserved cytotoxic T-cell epitopes in polyprotein pp220 of african swine fever virus

IF 1 Q4 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Biomedical and Biotechnology Research Journal Pub Date : 2022-07-01 DOI:10.4103/bbrj.bbrj_79_22
Aiman Juan, Keana Palma, M. Suarez, L. Herrera-Ong
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Abstract

Background: High mortality rate of pigs peaked in 2020 due to the re-emergence of a deadly African swine fever virus (ASFV) which has led to transcontinental outbreaks in Europe, reportedly from 2014 to 2019, and in Asia and the Pacific from 2018–2020. Given the huge socioeconomic consequences of the disease, vaccines that will prime the immunity of swine against this pathogen is a dire necessity. Methods: In silico identification and characterization of highly conserved cytotoxic T-cell (CD8+) epitopes derived from one of its structural proteins, pp220, were analyzed. Protein sequences of pp220 were retrieved and clustered to obtain highly conserved sequences. Cross-reactive epitopes were filtered out, and the remaining epitopes were docked with swine leukocyte antigen-1*0401 (SLA-1*0401). Furthermore, the epitope stability was determined by comparing binding energy, dissociation constant, and eigenvalues of the epitopes with the values of positive control, influenza-epitope complex. Results: This study showed that 20 highly conserved epitopes promiscuously bind to two or more SLAs and 9 of which epitopes (ALDLSLIGF, QIYKTLLEY, FLNKSTQAY, IADAINQEF, IINPSITEY, AINTFMYYY, SLYPTQFDY, RSNPGSFYW, and RLDRKHILM) that were validated exhibit potential immunogenicity based on the acceptable binding energy, dissociation constant, and eigenvalues. Conclusion: This study has identified epitopes that show high conservancy, reducing the chance of epitope immune evasion. It is anticipated that the identified epitopes must be further evaluated as a potential immunotherapeutic agent in developing an epitope-based vaccine against ASFV.
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基于免疫信息学鉴定非洲猪瘟病毒多蛋白pp220中高度保守的细胞毒性T细胞表位
背景:由于致命的非洲猪瘟病毒(ASFV)的再次出现,猪的高死亡率在2020年达到峰值,据报道,该病毒在2014年至2019年在欧洲和2018年至2020年在亚洲及太平洋地区引发了跨洲疫情。鉴于这种疾病的巨大社会经济后果,为猪提供对抗这种病原体的免疫力的疫苗是非常必要的。方法:分析来源于其结构蛋白pp220的高度保守的细胞毒性T细胞(CD8+)表位的计算机识别和表征。对pp220的蛋白质序列进行检索和聚类以获得高度保守的序列。滤出交叉反应表位,并将剩余的表位与猪白细胞抗原-1*0401(SLA-1*0401)对接。此外,通过将表位的结合能、解离常数和特征值与阳性对照、流感表位复合物的值进行比较来确定表位的稳定性。结果:本研究表明,20个高度保守的表位与两个或多个SLA混杂结合,其中9个表位(ALDLSLIGF、QYKTLLEY、FLNKSTQAY、IADAINQEF、IINPSITEY、AINTFMYY、SLYPTQFDY、RSNPGSFYW和RLDRKHILM)根据可接受的结合能、解离常数和特征值显示出潜在的免疫原性。结论:本研究已鉴定出具有高保护性的表位,减少了表位免疫逃避的机会。预计在开发针对ASFV的基于表位的疫苗时,必须进一步评估所鉴定的表位作为潜在的免疫治疗剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biomedical and Biotechnology Research Journal
Biomedical and Biotechnology Research Journal Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
2.20
自引率
42.90%
发文量
24
审稿时长
11 weeks
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