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利用药物化合物的计算机模拟筛选和自由能计算方法靶向严重急性呼吸综合征冠状病毒2(SARS-CoV-2)的Macrodomain-1以恢复先天免疫反应

Targeting SARS-CoV-2 Macrodomain-1 to Restore the Innate Immune Response Using In Silico Screening of Medicinal Compounds and Free Energy Calculation Approaches.

作者信息

Mohammad Anwar, Alshawaf Eman, Arefanian Hossein, Marafie Sulaiman K, Khan Abbas, Wei Dong-Qing, Al-Mulla Fahd, Abubaker Jehad

机构信息

Department of Biochemistry and Molecular Biology, Dasman Diabetes Institute, Dasman 15462, Kuwait.

Department of Immunology and Microbiology, Dasman Diabetes Institute, Dasman 15462, Kuwait.

出版信息

Viruses. 2023 Sep 12;15(9):1907. doi: 10.3390/v15091907.

Abstract

Among the different drug targets of SARS-CoV-2, a multi-domain protein known as NSP3 is a critical element of the translational and replication machinery. The macrodomain-I, in particular, has been reported to have an essential role in the viral attack on the innate immune response. In this study, we explore natural medicinal compounds and identify potential inhibitors to target the SARS-CoV-2-NSP3 macrodomain-I. Computational modeling and simulation tools were utilized to investigate the structural-dynamic properties using triplicates of 100 ns MD simulations. In addition, the MM/GBSA method was used to calculate the total binding free energy of each inhibitor bound to macrodomain-I. Two significant hits were identified: 3,5,7,4'-tetrahydroxyflavanone 3'-(4-hydroxybenzoic acid) and 2-hydroxy-3-O-beta-glucopyranosyl-benzoic acid. The structural-dynamic investigation of both compounds with macrodomain-I revealed stable dynamics and compact behavior. In addition, the total binding free energy for each complex demonstrated a robust binding affinity, of ΔG -61.98 ± 0.9 kcal/mol for Compound A, while for Compound B, the ΔG was -45.125 ± 2.8 kcal/mol, indicating the inhibitory potential of these compounds. In silico bioactivity and dissociation constant (K) determination for both complexes further validated the inhibitory potency of each compound. In conclusion, the aforementioned natural products have the potential to inhibit NSP3, to directly rescue the host immune response. The current study provides the basis for novel drug development against SARS-CoV-2 and its variants.

摘要

在严重急性呼吸综合征冠状病毒2(SARS-CoV-2)的不同药物靶点中,一种名为NSP3的多结构域蛋白是翻译和复制机制的关键要素。特别是,据报道,巨结构域-I在病毒对先天免疫反应的攻击中起着至关重要的作用。在本研究中,我们探索天然药用化合物,并确定针对SARS-CoV-2-NSP3巨结构域-I的潜在抑制剂。利用计算建模和模拟工具,通过100纳秒分子动力学(MD)模拟的三次重复来研究结构动力学特性。此外,使用MM/GBSA方法计算每种与巨结构域-I结合的抑制剂的总结合自由能。确定了两个显著的命中化合物:3,5,7,4'-四羟基黄酮3'-(4-羟基苯甲酸)和2-羟基-3-O-β-吡喃葡萄糖基苯甲酸。对这两种化合物与巨结构域-I的结构动力学研究揭示了稳定的动力学和紧密的行为。此外,每个复合物的总结合自由能显示出强大的结合亲和力,化合物A的ΔG为-61.98±0.9千卡/摩尔,而化合物B的ΔG为-45.125±2.8千卡/摩尔,表明这些化合物具有抑制潜力。对两种复合物的计算机模拟生物活性和解离常数(K)测定进一步验证了每种化合物的抑制效力。总之,上述天然产物有潜力抑制NSP3,直接挽救宿主免疫反应。本研究为开发针对SARS-CoV-2及其变体的新型药物提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a340/10538035/79798b7254fc/viruses-15-01907-g001.jpg

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