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柑橘属精油中的天然化合物作为奥密克戎(BA.1)新冠病毒突变株刺突糖蛋白潜在抑制剂的研究

Study on Natural Chemical Compounds from Citric Essential Oils as Potential Inhibitors of an Omicron (BA.1) SARS-CoV-2 Mutants' Spike Glycoprotein.

作者信息

Ovchynnykova Olha, Booth Jordhan D, Cocroft Trey M, Sukhyy Kostyantyn M, Kapusta Karina

机构信息

Ukrainian State University of Chemical Technology, Dnipro, 49005, Ukraine.

Department of Chemistry and Physics, Tougaloo College, Tougaloo, MS, 39174, USA.

出版信息

Curr Comput Aided Drug Des. 2025;21(4):466-478. doi: 10.2174/0115734099275132231213055138.

Abstract

BACKGROUND

SARS-CoV-2's remarkable capacity for genetic mutation enables it to swiftly adapt to environmental changes, influencing critical attributes, such as antigenicity and transmissibility. Thus, multi-target inhibitors capable of effectively combating various viral mutants concurrently are of great interest. This study aimed to investigate natural compounds that could unitedly inhibit spike glycoproteins of various Omicron mutants. Implementation of various in silico approaches allows us to scan a library of compounds against a variety of mutants in order to find the ones that would inhibit the viral entry disregard of occurred mutations.

METHODS

An extensive analysis of relevant literature was conducted to compile a library of chemical compounds sourced from citrus essential oils. Ten homology models representing mutants of the Omicron variant were generated, including the latest 23F clade (EG.5.1), and the compound library was screened against them. Subsequently, employing comprehensive molecular docking and molecular dynamics simulations, we successfully identified promising compounds that exhibited sufficient binding efficacy towards the receptor binding domains (RBDs) of the mutant viral strains. The scoring of ligands was based on their average potency against all models generated herein, in addition to a reference Omicron RBD structure. Furthermore, the toxicity profile of the highest-scoring compounds was predicted.

RESULTS

Out of ten built homology models, seven were successfully validated and showed to be reliable for studies. Three models of clades 22C, 22D, and 22E had major deviations in their secondary structure and needed further refinement. Notably, through a 100 nanosecond molecular dynamics simulation, terpinen-4-ol emerged as a potent inhibitor of the Omicron SARS-CoV-2 RBD from the 21K clade (BA.1); however, it did not show high stability in complexes with other mutants. This suggests the need for the utilization of a larger library of chemical compounds as potential inhibitors.

CONCLUSION

The outcomes of this investigation hold significant potential for the utilization of a homology modeling approach for the prediction of RBD's secondary structure based on its sequence when the 3D structure of a mutated protein is not available. This opens the opportunities for further advancing the drug discovery process, offering novel avenues for the development of multifunctional, non-toxic natural medications.

摘要

背景

严重急性呼吸综合征冠状病毒2(SARS-CoV-2)卓越的基因突变能力使其能够迅速适应环境变化,影响抗原性和传播性等关键特性。因此,能够同时有效对抗各种病毒突变体的多靶点抑制剂备受关注。本研究旨在探究能够联合抑制各种奥密克戎突变体刺突糖蛋白的天然化合物。实施各种计算机模拟方法使我们能够针对各种突变体扫描化合物库,以找到那些无论发生何种突变都能抑制病毒进入的化合物。

方法

对相关文献进行广泛分析,汇编了一个源自柑橘属精油的化合物库。生成了代表奥密克戎变体突变体的十个同源模型,包括最新的23F分支(EG.5.1),并针对它们筛选化合物库。随后,通过全面的分子对接和分子动力学模拟,我们成功鉴定出对突变病毒株的受体结合域(RBD)具有足够结合效力的有前景的化合物。配体的评分基于其对本文生成的所有模型以及参考奥密克戎RBD结构的平均效力。此外,预测了得分最高的化合物的毒性概况。

结果

在构建的十个同源模型中,七个成功得到验证,并显示对研究可靠。22C、22D和22E分支的三个模型在二级结构上有较大偏差,需要进一步优化。值得注意的是,通过100纳秒的分子动力学模拟,萜品烯 - 4 - 醇成为21K分支(BA.1)奥密克戎SARS-CoV-2 RBD 的有效抑制剂;然而,它在与其他突变体的复合物中未显示出高稳定性。这表明需要利用更大的化合物库作为潜在抑制剂。

结论

本研究结果对于在无法获得突变蛋白三维结构时利用同源建模方法根据其序列预测RBD二级结构具有巨大潜力。这为进一步推进药物发现过程开辟了机会,为开发多功能、无毒的天然药物提供了新途径。

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