In-silico design of a new multi-epitope vaccine candidate against SARS-CoV-2

Abbas Alibakhshi, Armina Alagheband Bahrami, Elmira Mohammadi, Shahrzad Ahangarzadeh, Meysam Mobasheri
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Abstract

Frequent, and sometimes more dangerous, mutations in SARS-CoV-2 indicate that a stronger strategy is needed to produce an effective vaccine—a vaccine that contains a wider range of virus factors and remains effective if one or more mutations have occurred in a part of the genome. In this study, four important virus proteins were used to make a multi-epitope protein vaccine. For this purpose, antigenic determinant of 4 proteins were selected and a protein structure was designed using 4 domains containing epitopes. After examining its antigenic potential, its three-dimensional structure was designed and then docked with immune system receptors. Finally, using the dynamic molecular (MD) simulation, complexes and interactions were investigated and their interaction energies were measured. The results of the study showed that the designed structure has good relative stability and interacts well with its receptors and can be used as a vaccine candidate for further studies.
针对 SARS-CoV-2 的新型多表位候选疫苗的硅内设计
SARS-CoV-2病毒变异频繁,有时甚至更加危险,这表明需要一种更强有力的策略来生产有效的疫苗--一种包含更多病毒因子的疫苗,并且在基因组的某个部分发生一次或多次变异时仍然有效。在这项研究中,四种重要的病毒蛋白被用来制作多表位蛋白疫苗。为此,我们选择了 4 种蛋白质的抗原决定簇,并设计了包含表位的 4 个结构域的蛋白质结构。在研究其抗原潜力后,设计了其三维结构,然后与免疫系统受体对接。最后,利用动态分子(MD)模拟研究了复合物和相互作用,并测量了它们的相互作用能量。研究结果表明,所设计的结构具有良好的相对稳定性,与受体的相互作用良好,可作为候选疫苗进行进一步研究。
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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