{"title":"石榴皮多酚预防SARS-CoV-2主要蛋白酶的硅对接和分子动力学研究。","authors":"Madhulekha Rakshit, Sunita Muduli, Prem Prakash Srivastav, Sabyashachi Mishra","doi":"10.1080/07391102.2021.1979427","DOIUrl":null,"url":null,"abstract":"<p><p>Pomegranate peel, the waste product generated from pomegranate fruit, has prophylactic properties, such as antimicrobial, anti-malarial, and controls respiratory infections and influenza. Based on the previous literature and need of the hour, molecular docking was performed to evaluate the inhibitory effects of major pomegranate peel polyphenols against COVID-19. Among the 44 studied compounds, 37 polyphenols show interaction with the catalytic dyad of the M<sup>pro</sup> protease and 18 polyphenols have a higher binding affinity than that of the M<sup>pro</sup> protease inhibitor (N3), indicating their high probability of binding at ACE2: SARS-CoV-2 interface. Furthermore, several polyphenols studied in this work are found to have higher binding affinity as compared to those of hydroxychloroquine, lopinavir, nelfinavir, and curcumin, some of which have been earlier tested against COVID-19. Further, molecular dynamics simulations (200 ns) for M<sup>pro</sup>-polyphenols including pelargonidin3-glucoside, quercetin3-O-rhamnoside, cyanidin3-glucoside and punicalin revealed highly stable complexes with less conformational fluctuations and similar degree of compactness. Estimation of total number of intermolecular hydrogen bonds and binding free energy confirmed the stability of these M<sup>pro</sup>-polyphenol complexes over M<sup>pro</sup>-curcumin complex. Based on the greater binding affinity of polyphenols of pomegranate peel towards M<sup>pro</sup> as compared to that of curcumin, pomegranate peel may be considered in any herbal medicinal formulation or may be incorporated into daily diets for prevention of COVID-19.Communicated by Ramaswamy H. 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引用次数: 4
摘要
石榴果皮是石榴果实产生的废物,具有抗菌、抗疟疾、控制呼吸道感染和流感等预防作用。基于已有文献和时间的需要,我们进行分子对接,评价石榴皮主要多酚对COVID-19的抑制作用。在44种化合物中,37种多酚与Mpro蛋白酶的催化双偶体相互作用,18种多酚的结合亲和力高于Mpro蛋白酶抑制剂(N3),表明它们在ACE2: SARS-CoV-2界面上的结合概率很高。此外,与羟基氯喹、洛匹那韦、奈非那韦和姜黄素相比,本研究中研究的几种多酚具有更高的结合亲和力,其中一些已在早期对COVID-19进行了测试。此外,在200 ns的分子动力学模拟中,包括天竺花苷-葡萄糖苷、槲皮素- 0 -鼠李糖苷、花青素- 3-葡萄糖苷和柑桔苷在内的多酚类化合物显示出高度稳定的配合物,构象波动较小,紧凑程度相似。分子间氢键总数和结合自由能的测定证实了这些多酚配合物与姜黄素配合物的稳定性。与姜黄素相比,石榴皮中的多酚类物质对Mpro具有更强的结合亲和力,因此石榴皮可用于任何草药配方中,或可纳入日常饮食中,以预防COVID-19。由Ramaswamy H. Sarma传达。
Pomegranate peel polyphenols prophylaxis against SARS-CoV-2 main protease by in-silico docking and molecular dynamics study.
Pomegranate peel, the waste product generated from pomegranate fruit, has prophylactic properties, such as antimicrobial, anti-malarial, and controls respiratory infections and influenza. Based on the previous literature and need of the hour, molecular docking was performed to evaluate the inhibitory effects of major pomegranate peel polyphenols against COVID-19. Among the 44 studied compounds, 37 polyphenols show interaction with the catalytic dyad of the Mpro protease and 18 polyphenols have a higher binding affinity than that of the Mpro protease inhibitor (N3), indicating their high probability of binding at ACE2: SARS-CoV-2 interface. Furthermore, several polyphenols studied in this work are found to have higher binding affinity as compared to those of hydroxychloroquine, lopinavir, nelfinavir, and curcumin, some of which have been earlier tested against COVID-19. Further, molecular dynamics simulations (200 ns) for Mpro-polyphenols including pelargonidin3-glucoside, quercetin3-O-rhamnoside, cyanidin3-glucoside and punicalin revealed highly stable complexes with less conformational fluctuations and similar degree of compactness. Estimation of total number of intermolecular hydrogen bonds and binding free energy confirmed the stability of these Mpro-polyphenol complexes over Mpro-curcumin complex. Based on the greater binding affinity of polyphenols of pomegranate peel towards Mpro as compared to that of curcumin, pomegranate peel may be considered in any herbal medicinal formulation or may be incorporated into daily diets for prevention of COVID-19.Communicated by Ramaswamy H. Sarma.
期刊介绍:
The Journal of Biomolecular Structure and Dynamics welcomes manuscripts on biological structure, dynamics, interactions and expression. The Journal is one of the leading publications in high end computational science, atomic structural biology, bioinformatics, virtual drug design, genomics and biological networks.