Are the SARS-CoV-2 Variants Greater Threats? - An In Silico Analysis of the Spike Protein

J. Wilson, Sokolova, F. Jih
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Abstract

March 2020 marked the beginning of a global pandemic caused by SARSCoV- 2. With the development, production and distribution of several vaccines there are hopes to an end in sight. However, with the emergence of several mutated viral strains concerns are mounting as to the effectiveness of the current treatments and preventative measures against the new strains. Herein we analyzed and compared the interaction of the SARS-CoV-2 Spike (S) protein and its variants with human Angiotensin Converting Enzyme (ACE-2) and the binding affinities of several possible S-protein inhibitors with these variants via in silico molecular docking studies. The binding affinities of all the variants to ACE- 2 are less than that of SARS-CoV-2, indicating they are less potent than SARSCoV- 2. The inhibitors, however, showed decreased binding affinity to most of the mutant S-proteins than SARS-CoV-2, indicating it is more difficult to treat COVID using the therapeutic approach targeting the S-protein.
SARS-CoV-2变种的威胁更大吗?-刺突蛋白的计算机分析
2020年3月标志着sars - 2引起的全球大流行的开始。随着几种疫苗的开发、生产和分发,这种疾病有望在不久的将来结束。然而,随着一些突变病毒株的出现,人们越来越关注当前治疗和预防措施对新病毒株的有效性。在此,我们通过硅分子对接研究分析和比较了SARS-CoV-2 Spike (S)蛋白及其变体与人血管紧张素转换酶(ACE-2)的相互作用,以及几种可能的S蛋白抑制剂与这些变体的结合亲和力。所有变体对ACE- 2的结合亲和力均低于SARS-CoV-2,表明它们的效力低于SARSCoV- 2。然而,与SARS-CoV-2相比,这些抑制剂与大多数突变s蛋白的结合亲和力降低,这表明使用靶向s蛋白的治疗方法治疗COVID更困难。
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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