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首页> 外文期刊>RSC Advances >Inhibition of SARS-CoV-2 main protease by phenolic compounds from Manilkara hexandra (Roxb.) Dubard assisted by metabolite profiling and in silico virtual screening
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Inhibition of SARS-CoV-2 main protease by phenolic compounds from Manilkara hexandra (Roxb.) Dubard assisted by metabolite profiling and in silico virtual screening

机译:来自Manilkara Hexandra(Roxb。)Dubard的酚类化合物抑制SARS-COV-2主要蛋白酶促进代谢物分析和Silico虚拟筛选

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SARS-CoV-2 is a novel coronavirus that was first identified during the outbreak in Wuhan, China in 2019. It is an acute respiratory illness that can transfer among human beings. Natural products can provide a rich resource for novel antiviral drugs. They can interfere with viral proteins such as viral proteases, polymerases, and entry proteins. Several naturally occurring flavonoids were reported to have antiviral activity against different types of RNA and DNA viruses. A methanolic extract of Manilkara hexandra (Roxb.) Dubard leaves is rich in phenolic compounds, mainly flavonoids. Metabolic profiling of the secondary metabolites of Manilkara hexandra (Roxb.) Dubard leaves methanolic extract (MLME), and bark ethyl acetate (MBEE) extract using LC-HRESIMS resulted in the isolation of 18 compounds belonging to a variety of constituents, among which phenolic compounds, flavones, flavonol glycosides and triterpenes were predominant. Besides, four compounds ( I–IV ) were isolated and identified as myricetin I , myricitrin II , mearnsitrin III , and mearnsetin-3- O -β- D -rutinoside IV (compound IV is isolated for the first time from genus Manilkara ) and dereplicated in a metabolomic study as compounds 3 , 5 , 6 , and 12 , respectively. The molecular docking study showed that rutin, myricitrin, mearnsitrin, and quercetin 3- O -β- D -glucoside have strong interaction with SARS-CoV-2 protease with high binding energy of ?8.2072, ?7.1973, ?7.5855, and ?7.6750, respectively. Interestingly, the results proved that rutin which is a citrus flavonoid glycoside exhibits the strongest inhibition effect to the SARS-CoV-2 protease enzyme. Consequently, it can contribute to developing an effective antiviral drug lead against the SARS-CoV-2 pandemic.
机译:SARS-COV-2是一部新型冠状病毒,该目录是在2019年武汉爆发期间首次被确定的。它是一种可以在人类中转移的急性呼吸道疾病。天然产品可以为新型抗病毒药物提供丰富的资源。它们可以干扰病毒蛋白,例如病毒蛋白酶,聚合酶和进入蛋白。据报道,几种天然存在的黄酮酸对不同类型的RNA和DNA病毒具有抗病毒活性。 Manilkara Hexandra(Roxb)的甲醇提取物(Roxb。)杜巴德叶富含酚类化合物,主要是黄酮类化合物。 Manilkara Hexandra(RoxB)次副代谢物的代谢分析化合物,黄酮,黄酮醇糖苷和三萜是主要的。此外,将四种化合物(IV)分离并鉴定为Myricetin I,Myricitrin II,Mearnsitrin III和MearnsetIn-3-O-β-D-丁胺苷IV(化合物IV从Manilkara Genus第一次分离)和作为化合物3,5,6和12的代谢物研究中的全体化。分子对接研究表明,芦丁,霉菌蛋白,槲皮素和槲皮素3-O-β-D葡萄糖苷与SARS-COV-2蛋白酶具有很强的相互作用,具有高结合能量的α.8.2.2.8.2072,?7.5855,以及?7.6750 , 分别。有趣的是,结果证明了柑橘类黄酮苷糖苷的芦丁对SARS-COV-2蛋白酶酶具有最强的抑制作用。因此,它可以有助于开发针对SARS-COV-2大流行的有效抗病毒药物。

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