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严重急性呼吸综合征冠状病毒2(SARS-CoV-2)突变的结构方面:使用计算建模方法对与血管紧张素转换酶2(ACE-2)可能的感染性的影响。

Structural aspects of SARS-CoV-2 mutations: Implications to plausible infectivity with ACE-2 using computational modeling approach.

作者信息

Gopi Priyanka, Gurnani Manisha, Singh Shweta, Sharma Palak, Pandya Prateek

机构信息

Amity Institute of Forensic Sciences, Amity University, Noida, Uttar Pradesh, India.

Amity Institute of Environmental Science, Amity University, Noida, Uttar Pradesh, India.

出版信息

J Biomol Struct Dyn. 2023 Aug-Sep;41(14):6518-6533. doi: 10.1080/07391102.2022.2108901. Epub 2022 Aug 8.

Abstract

Some of the SARS-CoV-2 variants are said to be more infectious than the previous others and are causing panic around the globe. Cases related to Delta plus (δ+) and omicron (ο) variants are on the rise worldwide. This sudden surge warrants an investigation into the reasons for its binding with ACE-2. The present study attempts to find out the structural basis of binding interactions of SARS-CoV-2 mutants based on computational modeling and comparative analysis. strategies including protein-protein docking, mutation analysis, molecular dynamics, and binding energy calculations were used to study the binding of the 'receptor binding domain' (RBD) of the seven 'variants of concern' which include Alpha (α), Beta (β), Gamma (γ), Kappa (κ), Delta (δ), Delta plus (δ+) and omicron (ο) with ACE-2 (human angiotensin-converting enzyme-2) and with antibodies. Among all the variants dealt with in this study, Delta plus and omicron were found to be binding more strongly to ACE-2 than others due to inherent mutations and the consequent change in the hydrophilic and hydrophobic environment of the binding site. Furthermore, molecular dynamic (MD) simulations and subsequent MM/PBSA calculations provided useful structural insights into key residues participating in the interaction. Infectivity of a virus could be dependent on the interplay of evading antibodies and simultaneously attaching strongly with the host receptor. A cross-correlation between mutant spike proteins' binding with ACE-2 and antibodies provides a holistic assessment of the binding nature of these mutants vis-à-vis native virus and offers opportunities for designing potential therapeutics against these new mutants.Communicated by Ramaswamy H. Sarma.

摘要

据说一些新冠病毒变异株比之前的毒株更具传染性,正在全球范围内引发恐慌。与德尔塔 Plus(δ+)和奥密克戎(ο)变异株相关的病例在全球范围内呈上升趋势。这种突然激增的情况有必要对其与血管紧张素转化酶 2(ACE-2)结合的原因进行调查。本研究试图基于计算建模和比较分析找出新冠病毒突变体结合相互作用的结构基础。采用蛋白质-蛋白质对接、突变分析、分子动力学和结合能计算等策略,研究了包括阿尔法(α)、贝塔(β)、伽马(γ)、卡帕(κ)、德尔塔(δ)、德尔塔 Plus(δ+)和奥密克戎(ο)在内的七种“关切变异株”的“受体结合域”(RBD)与 ACE-2(人血管紧张素转化酶 2)以及与抗体的结合情况。在本研究涉及的所有变异株中,由于内在突变以及结合位点亲水性和疏水性环境的相应变化,发现德尔塔 Plus 和奥密克戎与 ACE-2 的结合比其他变异株更强。此外,分子动力学(MD)模拟及随后的 MM/PBSA 计算为参与相互作用的关键残基提供了有用的结构见解。病毒的传染性可能取决于逃避抗体和同时与宿主受体强烈结合的相互作用。突变刺突蛋白与 ACE-2 和抗体结合之间的相互关联,全面评估了这些突变体相对于天然病毒的结合性质,并为设计针对这些新突变体的潜在治疗方法提供了机会。由拉马斯瓦米·H·萨尔马传达。

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