红木(Swietenia macrophylla King)化合物对 PLpro 酶 SARS-COV-2 的分子对接和动力学模拟分析

Lalu Sanik Wahyu Fadil Amrulloh, Nuraini Harmastuti, Andri Prasetiyo, Rina Herowati
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引用次数: 0

摘要

背景:利用天然成分作为抗病毒药物可被视为治疗 SARS-CoV-2 的一种方法。其中一种潜在的植物桃花心木(Swietenia macrophylla King)在各国被广泛用作抗病毒治疗。木瓜蛋白酶(Paparin-like protease,PLpro)是一种重要的半胱氨酸蛋白酶,可调节病毒复制并干扰免疫感应的调节。研究目的本研究旨在预测桃花心木中哪些化合物对 SARS-CoV-2 的靶蛋白具有良好的亲和力、模式和稳定性相互作用。方法利用SwissADME的药物相似性参数,使用Autodock程序筛选将与PLpro对接的化合物。分子对接分析中观察到的参数是氨基酸残基的键能值和相互作用模型。然后使用分子动力学模拟方法对具有最佳相互作用的桃花心木植物化合物进行分析,根据均方根偏差(RMSD)和均方根波动(RMSF)值确定其键的稳定性。结果22 个化合物符合药物相似性要求。分子对接分析表明,7-脱乙酰氧基-7-oxogedunin 和 3β-hydroxy-stigmast-5-en-7-one 被预测为对 PLpro 分子靶点具有最佳结合亲和力并具有与天然配体相似的相互作用模式的化合物。分子动力学模拟结果表明,根据 RMSD 和 RMSF 值,化合物 3β-hydroxy-stigmast-5-en-7-one 比 7-deacetoxy-7-oxogedunin 表现出更高的稳定性。结论:预测 3β-hydroxy-stigmast-5-en-7-one 和 7-deacetoxy-7-oxogedunin 与 PLPro 有良好的相互作用,但 3β-hydroxy-stigmast-5-en-7-one 的相互作用稳定性更高。
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Analysis of Molecular Docking and Dynamics Simulation of Mahogany (Swietenia macrophylla King) Compounds Against the PLpro Enzyme SARS-COV-2
Background: Using natural ingredients as antivirals can be considered a treatment for SARS-CoV-2. One of the potential plants, mahogany (Swietenia macrophylla King), is widely used in various countries as an antiviral treatment. Paparin-like protease (PLpro) is an essential cysteine ​​protease that regulates viral replication and interferes with the regulation of immune sensing. Objective: This study aims to predict which compounds in the mahogany plant have good affinity, patterns, and stability interaction against the target protein of SARS-CoV-2. Methods: The drug-likeness parameter using SwissADME was used to screen compounds that will be docked against PLpro using the Autodock program. The parameters observed in molecular docking analysis are the value of bond energy and interaction model to amino acid residues. The compounds in mahogany plants that have the best interactions were then analyzed using molecular dynamics simulation methods to determine the stability of their bonds based on the values of Root Mean Square Deviation (RMSD) and Root Mean Square Fluctuation (RMSF). Results: Twenty-two compounds met the drug-likeness requirements. Molecular docking analysis showed that the compounds predicted to have the best binding affinity and have an interaction pattern similar to natural ligands towards the molecular target of PLpro are 7-deacetoxy-7-oxogedunin and 3β-hydroxy-stigmast-5-en-7-one. The molecular dynamics simulation results revealed that based on the RMSD and RMSF values, the compound 3β-hydroxy-stigmast-5-en-7-one showed higher stability than 7-deacetoxy-7-oxogedunin. Conclusion: 3β-hydroxy-stigmast-5-en-7-one and 7-deacetoxy-7-oxogedunin were predicted to have good interaction with PLPro; however, 3β-hydroxy-stigmast-5-en-7-one showed the higher interaction stability.
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