水飞蓟素与SARS-CoV-2受体的比较硅分子对接

M. A. A. G. Arasi, Sapthasri Ravichandran, I. Iayaraman
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摘要

COVID-19大流行已在全球185多个国家蔓延,数百万人感染,数十万人死亡。目前的大流行病使情况恶化,迫使开发更好的治疗方法。本研究利用AutoDock 1.4.6分析了新冠病毒受体与水飞蓟素的结合能力。此外,还将其与标准药物remdesivir进行了比较。水飞蓟素是一种从水飞蓟(水飞蓟)种子中提取的潜在植物化学化合物,已被证明是对抗几种病毒的抗病毒药物。因此水飞蓟素也可以是治疗COVID-19的有效化合物。本研究旨在确定COVID-19受体对水飞蓟素的结合能力,并进一步与瑞德西韦进行对比分析。使用药物发现工作室2021版软件分析配体和靶标。采用AutoDock 1.4.6软件进行对接研究。与标准瑞德西韦相比,5N11(人β -冠状病毒(β1CoV) OC43)、7MJP(与中和抗体COVA2-39复合物的SARS-CoV-2受体结合域)、7JMO(与中和抗体COVA2-04复合物的SARS-CoV-2受体结合域)对水飞毛素的结合能力最高,分别为-8.09、-7.23、-6.96,对接评分分别为-5.21、-3.76、-2.97。通过对比分析,水飞蓟素具有较好的、最高的结合能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative In-Silico Molecular Docking of Silymarin for SARS-CoV-2 Receptor
COVID-19 pandemic has spread across the world in over 185 countries, with millions of infections and hundreds of thousands of deaths. The current pandemic has made the situation worse, forcing the development of better treatment. In this work, the binding ability of covid receptors with silymarin has been analyzed using AutoDock 1.4.6. Further, it is compared with the standard drug remdesivir. Silymarin, a potential phytochemical compound obtained from the seeds of the Silybum marianum (milk thistle) plant, has been documented as the antiviral agent against several viruses. So silymarin can also be an effective compound in the treatment of COVID-19. This study aims to determine the binding ability of COVID-19 receptors towards silymarin and further comparative analysis by remdesivir. Drug Discovery Studio version 2021 software was been used to analyse ligand and target. AutoDock 1.4.6 software was used to perform the docking study. Among the various receptors, 5N11 (Human beta1-coronavirus (β1CoV) OC43), 7MJP (SARS-CoV-2 receptor binding domain in complex with neutralizing antibody COVA2-39), 7JMO (SARS-CoV-2 receptor-binding domain in complex with neutralizing antibody COVA2-04) receptors showed the highest binding ability of -8.09, -7.23, -6.96 towards silymarin compared to the standard remdesivir having the docking score of -5.21, -3.76, -2.97, respectively. By the comparative analysis, silymarin has a better and highest binding ability.
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