In Silico Studies on The Potential of Green Tea Catechin Compounds (Camellia sinensis) as Antiviral of SARS CoV-2 Againts Spike Glycoprotein (6LZG) and Main Protease (5R7Y)

Futna Naufa, R. Mutiah, Yen yen Ari Indrawijaya
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引用次数: 2

Abstract

COVID-19 is a disease caused by SARS CoV-2 by producing structural proteins and non-structural proteins. SARS CoV-2 uses a spike glycoprotein to bind ACE-2 receptors in host cells and uses main protease to replicate. This research aims to screen green tea catechin derivates as an antiviral for SARS CoV-2 through inhibition of spike glycoprotein (6LZG) and main protease (5R7Y). In silico studies carried out are molecular docking, prediction of physicochemical properties, and prediction of toxicity. The potential inhibition was assessed based on binding affinity and interaction of amino acid residues. From the molecular docking process showed that epicatechin and epigallocatechin provide inhibition to spike glycoprotein better than nafamostat indicated by binding affinity of -5.2 kcal/mol and -4.5 kcal/mol, while epigallocatechin gallate and epicatechin gallate provide inhibiton to main protease better than lopinavir with binding affinity of -8.7 kcal/mol and -8.3 kcal/mol. The results of the physicochemical properties prediction showed that only epigallocatechin gallate that did not fulfill five Lipinski's rule. Based on the toxicity class LD50, the derivates of catechin belong to classes 4 and 6. In conclusion, it can be known that epicatechin and epigallocatechin can be developed as an antiviral for SARS CoV-2.
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绿茶儿茶素化合物(Camellia sinensis)抗病毒SARS - CoV-2刺突糖蛋白(6LZG)和主要蛋白酶(5R7Y)潜力的计算机模拟研究
COVID-19是由SARS - CoV-2通过产生结构蛋白和非结构蛋白引起的疾病。SARS - CoV-2利用刺突糖蛋白结合宿主细胞中的ACE-2受体,并利用主蛋白酶进行复制。本研究旨在通过抑制刺突糖蛋白(6LZG)和主要蛋白酶(5R7Y),筛选绿茶儿茶素衍生物对SARS CoV-2的抗病毒作用。在硅片上进行的研究包括分子对接、物理化学性质预测和毒性预测。根据氨基酸残基的结合亲和力和相互作用来评估潜在的抑制作用。从分子对接过程看,表儿茶素和没食子儿茶素对尖峰糖蛋白的抑制作用优于那莫他,结合亲和力分别为-5.2和-4.5 kcal/mol,而没食子儿茶素没食子酸酯和表儿茶素没食子酸酯对主要蛋白酶的抑制作用优于洛匹那韦,结合亲和力分别为-8.7 kcal/mol和-8.3 kcal/mol。理化性质预测结果表明,只有表没食子儿茶素没食子酸酯不符合五利平斯基规则。根据毒性等级LD50,儿茶素衍生物可分为第4类和第6类。综上所述,表儿茶素和没食子儿茶素可以作为SARS CoV-2的抗病毒药物开发。
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