以马尔堡病毒l-蛋白为靶点设计候选表位肽疫苗的疫苗组学方法

In Silico Pharmacology Pub Date : 2021-03-06 eCollection Date: 2021-01-01 DOI:10.1007/s40203-021-00080-3
Tahmina Pervin, Arafat Rahman Oany
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引用次数: 1

摘要

马尔堡病毒是世界上最具威胁性的疾病之一,可引起严重的出血热,死亡率高达90%。美国食品和药物管理局(FDA)目前没有批准任何治疗或疫苗接种,以阻止马尔堡病毒和暴露后。在本研究中,采用疫苗组学方法设计了一种针对马尔堡病毒的潜在新型肽疫苗,靶向RNA定向RNA聚合酶(l)。从NCBI GenBank服务器上收集了来自马尔堡病毒不同变体的48种l蛋白,并用于分类最佳抗原蛋白,从而预测T细胞和b细胞表位。首先,对前26个表位与主要组织相容性复合体(MHC) I类和II类等位基因的吸引力进行评估。最后,我们精心选择了4个候选中心表位NLSDLTFLI、FRYEFTRHF、YRLRNSTAL和YRVRNVQTL。其中FRYEFTRHF肽和YRVRNVQTL肽100%保护。虽然YRLRNSTAL的保护率为95.74%,但其作为T细胞表位的综合评分最高(2.5461),在全球人群中的群体覆盖率为94.42%。发现该表位无致敏性,并与人类白细胞抗原(hla)对接相互作用也得到证实。最后,对推荐肽的体内分析可能有助于开发一种有效的、专门流行的疫苗,这将是阻止病毒传播的有效途径。补充资料:在线版本提供补充资料,网址为10.1007/s40203-021-00080-3。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Vaccinomics approach for scheming potential epitope-based peptide vaccine by targeting l-protein of Marburg virus.

Vaccinomics approach for scheming potential epitope-based peptide vaccine by targeting l-protein of Marburg virus.

Vaccinomics approach for scheming potential epitope-based peptide vaccine by targeting l-protein of Marburg virus.

Vaccinomics approach for scheming potential epitope-based peptide vaccine by targeting l-protein of Marburg virus.

Marburg virus is one of the world's most threatening diseases, causing extreme hemorrhagic fever, with a death rate of up to 90%. The Food and Drug Administration (FDA) currently not authorized any treatments or vaccinations for the hindrance and post-exposure of the Marburg virus. In the present study, the vaccinomics methodology was adopted to design a potential novel peptide vaccine against the Marburg virus, targeting RNA-directed RNA polymerase (l). A total of 48 l-proteins from diverse variants of the Marburg virus were collected from the NCBI GenBank server and used to classify the best antigenic protein leading to predict equally T and B-cell epitopes. Initially, the top 26 epitopes were evaluated for the attraction with major histocompatibility complex (MHC) class I and II alleles. Finally, four prospective central epitopes NLSDLTFLI, FRYEFTRHF, YRLRNSTAL, and YRVRNVQTL were carefully chosen. Among these, FRYEFTRHF and YRVRNVQTL peptides showed 100% conservancy. Though YRLRNSTAL showed 95.74% conservancy, it demonstrated the highest combined score as T cell epitope (2.5461) and population coverage of 94.42% among the whole world population. The epitope was found non-allergenic, and docking interactions with human leukocyte antigens (HLAs) also verified. Finally, in vivo analysis of the recommended peptides might contribute to the advancement of an efficient and exclusively prevalent vaccine that would be an active route to impede the virus spreading.

Supplementary information: The online version contains supplementary material available at 10.1007/s40203-021-00080-3.

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