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新冠疫情第一波期间突变对严重急性呼吸综合征冠状病毒2致病性和抗原活性的影响:一项全面的免疫信息学分析

The Impact of Mutations on the Pathogenic and Antigenic Activity of SARS-CoV-2 during the First Wave of the COVID-19 Pandemic: A Comprehensive Immunoinformatics Analysis.

作者信息

Baloch Zulqarnain, Ikram Aqsa, Hakim Mohamad S, Awan Faryal Mehwish

机构信息

Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming 650500, China.

Institute of Molecular Biology and Biotechnology (IMBB), The University of Lahore (UOL), Lahore 54000, Pakistan.

出版信息

Vaccines (Basel). 2021 Nov 30;9(12):1410. doi: 10.3390/vaccines9121410.

Abstract

An in-depth analysis of first-wave SARS-CoV-2 genome is required to identify various mutations that significantly affect viral fitness. In the present study, we performed a comprehensive in silico mutational analysis of 3C-like protease (3CLpro), RNA-dependent RNA polymerase (RdRp), and spike (S) proteins with the aim of gaining important insights into first-wave virus mutations and their functional and structural impact on SARS-CoV-2 proteins. Our integrated analysis gathered 6000 SARS-CoV-2 sequences and identified 92 mutations in S, 37 in RdRp, and 11 in 3CLpro regions. The impact of these mutations was also investigated using various in silico approaches. Among these, 32 mutations in S, 15 in RdRp, and 3 in 3CLpro proteins were found to be deleterious in nature and could alter the structural and functional behavior of the encoded proteins. The D614G mutation in spike and the P323Lmutation in RdRp are the globally dominant variants with a high frequency. Most of the identified mutations were also found in the binding moiety of the viral proteins which determine their critical involvement in host-pathogen interactions and may represent drug targets. Furthermore, potential CD4 and CD8 T cell epitopes were predicted, and their overlap with genetic variations was explored. This study also highlights several hot spots in which HLA and drug selective pressure overlap. The findings of the current study may allow a better understanding of COVID-19 diagnostics, vaccines, and therapeutics.

摘要

需要对第一波严重急性呼吸综合征冠状病毒2(SARS-CoV-2)基因组进行深入分析,以识别显著影响病毒适应性的各种突变。在本研究中,我们对3C样蛋白酶(3CLpro)、RNA依赖性RNA聚合酶(RdRp)和刺突(S)蛋白进行了全面的计算机模拟突变分析,旨在深入了解第一波病毒突变及其对SARS-CoV-2蛋白的功能和结构影响。我们的综合分析收集了6000个SARS-CoV-2序列,在S区域鉴定出92个突变,在RdRp区域鉴定出37个突变,在3CLpro区域鉴定出11个突变。还使用各种计算机模拟方法研究了这些突变的影响。其中,发现S蛋白中有32个突变、RdRp蛋白中有15个突变、3CLpro蛋白中有3个突变具有有害性质,可能会改变编码蛋白的结构和功能行为。刺突蛋白中的D614G突变和RdRp中的P323L突变是全球占主导地位的高频变体。大多数鉴定出的突变也存在于病毒蛋白的结合部分,这决定了它们在宿主-病原体相互作用中的关键作用,可能代表药物靶点。此外,预测了潜在的CD4和CD8 T细胞表位,并探索了它们与基因变异的重叠情况。本研究还突出了几个HLA和药物选择压力重叠的热点。当前研究的结果可能有助于更好地理解2019冠状病毒病的诊断、疫苗和治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d82e/8705738/2190e4760b47/vaccines-09-01410-g001.jpg

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