Insilico assessment of hesperidin on SARS-CoV-2 main protease and RNA polymerase: Molecular docking and dynamics simulation approach

IF 2.3 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Biochemistry and Biophysics Reports Pub Date : 2024-08-05 DOI:10.1016/j.bbrep.2024.101804
Elaheh Molaakbari , Mohammad Reza Aallae , Fereshteh Golestanifar , Zahra Garakani-Nejad , Ahmad Khosravi , Mohsen Rezapour , Rahime Eshaghi Malekshah , Mahsa Ghomi , Guogang Ren
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Abstract

The present study uses molecular docking and dynamic simulations to evaluate the inhibitory effect of flavonoid glycosides-based compounds on coronavirus Main protease (Mpro) and RNA polymerase. The Molegro Virtual Docker (MVD) software is utilized to simulate and calculate the binding parameters of compounds with coronavirus. The docking results show that the selected herbal compounds are more effective than those of chemical compounds. It is also revealed that five herbal ligands and two chemical ligands have the best docking scores. Furthermore, a Molecular Dynamics (MD) simulation was conducted for Hesperidin, confirming docking results. Analysis based on different parameters such as Root-mean-square deviation (RMSD), Root mean square fluctuation (RMSF), Radius of gyration (Rg), Solvent accessibility surface area (SASA), and the total number of hydrogen bonds suggests that Hesperidin formed a stable complex with Mpro. Absorption, Distribution, Metabolism, Excretion, And Toxicity (ADMET) analysis was performed to compare Hesperidin and Grazoprevir as potential antiviral medicines, evaluating both herbal and chemical ligand results. According to the study, herbal compounds could be effective on coronavirus and are admissible candidates for developing potential operative anti-viral medicines. Hesperidin was found to be the most acceptable interaction. Grazoprevir is an encouraging candidate for drug development and clinical trials, with the potential to become a highly effective Mpro inhibitor. Compared to RNA polymerase, Mpro showed a greater affinity for bonding with Hesperidin. van der Waals and electrostatic energies dominated, creating a stable Hesperidin-Mpro and Hesperidin-RNA polymerase complex.

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橙皮甙对SARS-CoV-2主要蛋白酶和RNA聚合酶的分子内评估:分子对接和动力学模拟方法
本研究利用分子对接和动态模拟来评估黄酮苷类化合物对冠状病毒主要蛋白酶(Mpro)和RNA聚合酶的抑制作用。研究利用 Molegro Virtual Docker(MVD)软件模拟计算化合物与冠状病毒的结合参数。对接结果表明,所选中草药化合物比化学化合物更有效。结果还显示,5 种草药配体和 2 种化学配体的对接得分最高。此外,还对橙皮甙进行了分子动力学(MD)模拟,证实了对接结果。基于均方根偏差(RMSD)、均方根波动(RMSF)、回旋半径(Rg)、溶剂可及表面积(SASA)和氢键总数等不同参数的分析表明,橙皮甙与Mpro形成了稳定的复合物。研究人员通过吸收、分布、代谢、排泄和毒性(ADMET)分析,对作为潜在抗病毒药物的橙皮甙和格拉佐普韦进行了比较,同时评估了草药和化学配体的结果。研究结果表明,草药化合物对冠状病毒有效,可作为开发潜在抗病毒药物的候选药物。研究发现,橙皮甙是最容易接受的相互作用。Grazoprevir 是一种令人鼓舞的候选药物,有望成为一种高效的 Mpro 抑制剂,用于药物开发和临床试验。与 RNA 聚合酶相比,Mpro 与 Hesperidin 结合的亲和力更大。范德华能和静电能占主导地位,从而形成了稳定的 Hesperidin-Mpro 和 Hesperidin-RNA 聚合酶复合物。
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来源期刊
Biochemistry and Biophysics Reports
Biochemistry and Biophysics Reports Biochemistry, Genetics and Molecular Biology-Biophysics
CiteScore
4.60
自引率
0.00%
发文量
191
审稿时长
59 days
期刊介绍: Open access, online only, peer-reviewed international journal in the Life Sciences, established in 2014 Biochemistry and Biophysics Reports (BB Reports) publishes original research in all aspects of Biochemistry, Biophysics and related areas like Molecular and Cell Biology. BB Reports welcomes solid though more preliminary, descriptive and small scale results if they have the potential to stimulate and/or contribute to future research, leading to new insights or hypothesis. Primary criteria for acceptance is that the work is original, scientifically and technically sound and provides valuable knowledge to life sciences research. We strongly believe all results deserve to be published and documented for the advancement of science. BB Reports specifically appreciates receiving reports on: Negative results, Replication studies, Reanalysis of previous datasets.
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