Evaluation of berberine inhibitory effects on influenza neuraminidase enzyme: A molecular dynamics study

Q3 Pharmacology, Toxicology and Pharmaceutics Journal of HerbMed Pharmacology Pub Date : 2023-08-10 DOI:10.34172/jhp.2023.42334
Majid Asadi-Samani, Dhiya Altememy, Aziz H. Jasim, Javad Saffari-Chaleshtori, Mohammad-Taghi Moradi
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Abstract

Introduction: Due to the high prevalence and drug resistance reported for the influenza virus in recent years, much research is being conducted on the discovery and introduction of more effective drugs against the virus. In this regard, the present bioinformatics study examined the inhibitory effects of berberine, a plant-based alkaloid, on influenza virus neuraminidase using docking and molecular dynamics studies. Methods: To conduct this study, the three-dimensional structure and PDB file of influenza virus neuraminidase were prepared from the protein and molecular information database, and the structure file of the berberine and oseltamivir (as positive control) molecules were prepared from the PubChem database. Using GROMACS software, simulation and molecular dynamics calculations were performed in the absence of an inhibitor. Molecular docking studies were performed using AutoDock software, and re-simulation of the protein-ligand complex was performed using GROMACS software. Results: Berberine was bound to the neuraminidase molecule with three hydrogen bonds and eleven hydrophobic bonds at the binding site. The amount of binding energy (BE) of berberine and oseltamivir was equal to -7.93 and -6.27 kcal/mol with the estimated inhibition constant (EIC) of 1.5 and 25.2 μM, respectively. Over simulation time, the radius of gyration (Rg) of the enzyme at berberine binding increased, but there was no significant difference in system energy changes (TE). Conclusion: Due to berberine binding, structural changes occur in the secondary and tertiary structures of influenza virus neuraminidase. The large number of created bonds, the low level of binding energy, and the low concentration of the EIC indicate the high tendency of berberine to bind to the binding site of neuraminidase.
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评估小檗碱对流感神经氨酸酶的抑制作用:分子动力学研究
导言:由于近年来流感病毒的高流行率和耐药性的报道,人们正在进行大量研究,以发现和引进更有效的抗病毒药物。为此,本生物信息学研究采用对接和分子动力学研究方法,考察了小檗碱(一种植物生物碱)对流感病毒神经氨酸酶的抑制作用。研究方法为了进行这项研究,我们从蛋白质和分子信息数据库中获取了流感病毒神经氨酸酶的三维结构和 PDB 文件,并从 PubChem 数据库中获取了小檗碱和奥司他韦(作为阳性对照)分子的结构文件。在没有抑制剂的情况下,使用 GROMACS 软件进行了模拟和分子动力学计算。使用 AutoDock 软件进行了分子对接研究,并使用 GROMACS 软件对蛋白质配体复合物进行了重新模拟。结果小檗碱与神经氨酸酶分子的结合位点有三个氢键和十一个疏水键。小檗碱和奥司他韦的结合能(BE)分别为-7.93和-6.27 kcal/mol,估计抑制常数(EIC)分别为1.5和25.2 μM。随着模拟时间的推移,小檗碱结合时的酶回旋半径(Rg)增加,但系统能量变化(TE)没有显著差异。结论由于小檗碱的结合,流感病毒神经氨酸酶的二级和三级结构发生了变化。生成键的数量多、结合能的水平低、EIC 的浓度低,表明小檗碱与神经氨酸酶结合位点的结合倾向性很高。
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来源期刊
Journal of HerbMed Pharmacology
Journal of HerbMed Pharmacology Pharmacology, Toxicology and Pharmaceutics-Drug Discovery
CiteScore
2.50
自引率
0.00%
发文量
49
审稿时长
12 weeks
期刊介绍: Journal of Herbmed Pharmacology (J Herbmed Pharmacol) is the intersection between medicinal plants and pharmacology. This international journal publishes manuscripts in the fields of medicinal plants, pharmacology and therapeutic. This journal aims to reach all relevant national and international medical institutions and persons in electronic version free of charge. J Herbmed Pharmacol has pursued this aim through publishing editorials, original research articles, reviews, mini-reviews, commentaries, letters to the editor, hypothesis, case reports, epidemiology and prevention, news and views. In this journal, particular emphasis is given to research, both experimental and clinical, aimed at protection/prevention of diseases. A further aim of this journal is to emphasize and strengthen the link between herbalists and pharmacologists. In addition, J Herbmed Pharmacol welcomes basic biomedical as well as pharmaceutical scientific research applied to clinical pharmacology. Contributions in any of these formats are invited for editorial consideration following peer review by at least two experts in the field.
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