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首页> 外文期刊>Saudi Journal of Biological Sciences >In silico evaluation of flavonoids as effective antiviral agents on the spike glycoprotein of SARS-CoV-2
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In silico evaluation of flavonoids as effective antiviral agents on the spike glycoprotein of SARS-CoV-2

机译:在SARS-COV-2的穗糖蛋白穗子糖蛋白中的类黄酮类化合物的硅类化评价

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The novel coronavirus pandemic has spread over in 213 countries as of July 2020. Approximately 12 million people have been infected so far according to the reports from World Health Organization (WHO). Preventive measures are being taken globally to avoid the rapid spread of virus. In the current study, an in silico approach is carried out as a means of inhibiting the spike protein of the novel coronavirus by flavonoids from natural sources that possess both antiviral and anti-inflammatory properties. The methodology is focused on molecular docking of 10 flavonoid compounds that are docked with the spike protein of SARS-CoV-2, to determine the highest binding affinity at the binding site. Molecular dynamics simulation was carried out with the flavonoid-protein complex showing the highest binding affinity and highest interactions. The flavonoid naringin showed the least binding energy of ?9.8 Kcal/mol with the spike protein which was compared with the standard drug, dexamethasone which is being repurposed to treat critically ill patients. MD simulation was carried out on naringin-spike protein complex for their conformational stability in the active site of the novel coronavirus spike protein. The RMSD of the complex appeared to be more stable when compared to that of the protein from 0.2?nm to 0.4?nm. With the aid of this in silico approach further in vitro studies can be carried out on these flavonoids against the novel coronavirus as a means of viral protein inhibitors.
机译:新型冠状病毒大流行病于2020年7月在213个国家蔓延。迄今为止根据世界卫生组织(世卫组织)的报道,约1200万人被感染。在全球范围内采取预防措施,以避免病毒的迅速传播。在目前的研究中,以来自具有抗病毒和抗炎性质的天然来源的黄酮醇来抑制新型冠状病毒的尖峰蛋白的方法进行。该方法的重点是分子对接的10种黄酮化合物,该化合物与SARS-COV-2的尖峰蛋白停靠,以确定在结合位点处的最高结合亲和力。分子动力学模拟与表达最高结合亲和力和最高相互作用的类黄酮蛋白质复合物进行。黄酮酸突发素显示出β9.8kcal / mol的最小结合能量,其与标准药物的刺蛋白质与标准药物相比,这是正在重新批准治疗批判性病患者的标准药物。 MD模拟在新型冠状病毒穗蛋白的活性位点中的纳沙汀蛋白蛋白质复合物进行了纳沙宁蛋白蛋白质复合物。与蛋白质从0.2Ω·nm的蛋白质相比,复合物的RMSD似乎更稳定。借助于这种硅化方法进一步的体外研究可以在这些类黄酮上对新的冠状病毒作为病毒蛋白抑制剂的方法进行。

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