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基于基准的分子对接结合分子动力学稳定性分析用于预测橄榄裂环烯醚萜对SARS-CoV-2木瓜样蛋白酶的抑制作用

Benchmarked molecular docking integrated molecular dynamics stability analysis for prediction of SARS-CoV-2 papain-like protease inhibition by olive secoiridoids.

作者信息

Thangavel Neelaveni, Albratty Mohammed

机构信息

Department of Pharmaceutical Chemistry & Pharmacognosy, College of Pharmacy, Jazan University, Jazan, Saudi Arabia.

出版信息

J King Saud Univ Sci. 2023 Jan;35(1):102402. doi: 10.1016/j.jksus.2022.102402. Epub 2022 Oct 30.

Abstract

OBJECTIVES

We performed a virtual screening of olive secoiridoids of the OliveNet library to predict SARS-CoV-2 PLpro inhibition. Benchmarked molecular docking protocol that evaluated the performance of two docking programs was applied to execute virtual screening. Molecular dynamics stability analysis of the top-ranked olive secoiridoid docked to PLpro was also carried out.

METHODS

Benchmarking virtual screening used two freely available docking programs, AutoDock Vina 1.1.2. and AutoDock 4.2.1. for molecular docking of olive secoiridoids to a single PLpro structure. Screening also included benchmark structures of known active and decoy molecules from the DEKOIS 2.0 library. Based on the predicted binding energies, the docking programs ranked the screened molecules. We applied the usual performance evaluation metrices to evaluate the docking programs using the predicted ranks. Molecular dynamics of the top-ranked olive secoiridoid bound to PLpro and computation of MM-GBSA energy using three iterations during the last 50 ps of the analysis of the dynamics in Desmond supported the stability prediction.

RESULTS AND DISCUSSIONS

Predictiveness curves suggested that AutoDock Vina has a better predictive ability than AutoDock, although there was a moderate correlation between the active molecules rankings (Kendall's correlation of rank (τ) = 0.581). Interestingly, two same molecules, Demethyloleuropein aglycone, and Oleuroside enriched the top 1 % ranked olive secoiridoids predicted by both programs. Demethyloleuropein aglycone bound to PLpro obtained by docking in AutoDock Vina when analyzed for stability by molecular dynamics simulation for 50 ns displayed an RMSD, RMSF<2 Å, and MM-GBSA energy of -94.54 ± 6.05 kcal/mol indicating good stability. Molecular dynamics also revealed the interactions of Demethyloleuropein aglycone with binding sites 2 and 3 of PLpro, suggesting a potent inhibition. In addition, for 98 % of the simulation time, two phenolic hydroxy groups of Demethyloleuropein aglycone maintained two hydrogen bonds with Asp302 of PLpro, specifying the significance of the groups in receptor binding.

CONCLUSION

AutoDock Vina retrieved the active molecules accurately and predicted Demethyloleuropein aglycone as the best inhibitor of PLpro. The Arabian diet consisting of olive products rich in secoiridoids benefits from the PLpro inhibition property and reduces the risk of viral infection.

摘要

目的

我们对OliveNet库中的橄榄裂环烯醚萜进行了虚拟筛选,以预测其对严重急性呼吸综合征冠状病毒2(SARS-CoV-2)木瓜样蛋白酶(PLpro)的抑制作用。应用经过基准测试的分子对接方案(该方案评估了两个对接程序的性能)来执行虚拟筛选。还对与PLpro对接的排名靠前的橄榄裂环烯醚萜进行了分子动力学稳定性分析。

方法

基准虚拟筛选使用了两个免费的对接程序,即AutoDock Vina 1.1.2和AutoDock 4.2.1,用于将橄榄裂环烯醚萜与单个PLpro结构进行分子对接。筛选还包括来自DEKOIS 2.0库的已知活性分子和诱饵分子的基准结构。基于预测的结合能,对接程序对筛选出的分子进行排名。我们应用常用的性能评估指标,根据预测排名来评估对接程序。对排名靠前的与PLpro结合的橄榄裂环烯醚萜进行分子动力学研究,并在Desmond中对动力学分析的最后50皮秒内使用三次迭代计算MM-GBSA能量,以支持稳定性预测。

结果与讨论

预测曲线表明,AutoDock Vina比AutoDock具有更好的预测能力,尽管活性分子排名之间存在中等程度的相关性(肯德尔秩相关系数(τ)=0.581)。有趣的是,两种相同的分子,即去甲基橄榄苦苷元苷元和橄榄苦苷,在两个程序预测的排名靠前的橄榄裂环烯醚萜中都占前1%。通过AutoDock Vina对接获得的与PLpro结合的去甲基橄榄苦苷元苷元,在进行50纳秒的分子动力学模拟稳定性分析时,显示出均方根偏差(RMSD)、均方根波动(RMSF)<2埃,MM-GBSA能量为-94.54±6.05千卡/摩尔,表明稳定性良好。分子动力学还揭示了去甲基橄榄苦苷元苷元与PLpro的结合位点2和3之间的相互作用,表明具有强效抑制作用。此外,在98%的模拟时间内,去甲基橄榄苦苷元苷元的两个酚羟基与PLpro的天冬氨酸302保持两个氢键,说明了这些基团在受体结合中的重要性。

结论

AutoDock Vina准确地检索到了活性分子,并预测去甲基橄榄苦苷元苷元是PLpro的最佳抑制剂。由富含裂环烯醚萜的橄榄产品组成的阿拉伯饮食受益于PLpro抑制特性,并降低了病毒感染风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5378/9617799/1512deb3a63a/gr1_lrg.jpg

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