基于多表位的新型COVID-19疫苗的设计

Afshin Samimi Nemati, Majid Tafrihi, F. Sheikhi, Abolfazl Rostamian Tabari, Amirhossein Haditabar
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引用次数: 1

摘要

背景:严重急性呼吸系统综合征冠状病毒2型(SARS-CoV-2)目前已在全球人群中引起重大流行病。该疾病的高传播率和死亡率需要进行研究,以快速设计和有效生产疫苗。本研究旨在利用生物信息学方法预测和设计一种新型的针对严重急性呼吸系统综合征冠状病毒2型的多表位疫苗。材料和方法:使用免疫表位数据库(IEDB)和BepiPred 2.0服务器,选择冠状病毒包膜蛋白、开放阅读框7b(ORF7b)、开放阅读框架8(ORF8)、开放读框10(ORF10)和非结构蛋白9(Nsp9)作为表位定位的靶标。此外,还进行了分子对接研究,以确定候选疫苗对Toll样受体(TLR3、TLR4)和主要组织相容性复合体(MHC I和MHC II)分子的亲和力。选择13个表位构建多表位疫苗。结果:我们发现构建的肽具有良好的抗原性、稳定性和适宜的半衰期。Ramachandran和ERRAT图认可了精化过程后预测模型的质量。分子对接研究显示,ClusPro 2.0服务器中的抗体模式对MHC I、MHC II、TLR3和TLR4的结合能最低。结论:所设计的疫苗具有良好的抗原性和稳定性,可能是2019冠状病毒病(新冠肺炎)传染病的合适候选疫苗,但需要进行体外和体内实验来完成和证实我们的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Designing a New Multiepitope-based Vaccine Against COVID-19
Background: Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) has currently caused a significant pandemic among worldwide populations. The high transmission and mortality rates of the disease necessitate studies for rapid designing and effective vaccine production. This study aims to predict and design a novel multi-epitope vaccine against the SARS-CoV-2 virus using bioinformatics approaches. Materials and Methods: Coronavirus envelope proteins, Open Reading Frame 7b (ORF7b), Open Reading Frame 8 (ORF8), Open Reading Frame 10 (ORF10), and Nonstructural protein 9 (Nsp9) were selected as targets for epitope mapping using Immune Epitope Data Bank (IEDB) and BepiPred 2.0 servers. Also, molecular docking studies were performed to determine the candidate vaccine’s affinity to Toll-Like Receptor (TLR3, TLR4) and Major Histocompatibility Complex (MHC I and MHC II) molecules. Thirteen epitopes were selected to construct the multi-epitope vaccine. Results: We found that the constructed peptide has valuable antigenicity, stability, and appropriate half-life. The Ramachandran and ERRAT plots approved the quality of the predicted model after the refinement process. Molecular docking investigations revealed that antibody-mode in the ClusPro 2.0 server showed the lowest binding energy for MHC I, MHC II, TLR3, and TLR4. Conclusion: The designed vaccine has a good antigenicity and stability and could be a proper vaccine candidate against the Coronavirus Disease 2019 (COVID-19) infectious disease though, in vitro and in vivo experiments are necessary to complete and confirm our results.
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