Secondary Metabolites of Various Indonesian Medicinal Plants as SARS-CoV-2 Inhibitors: In Silico Study

Emilia Tungary, M. Wahjudi, Tjie Kok
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引用次数: 1

Abstract

Corona virus disease 2019 caused by SARS-CoV-2 infection emerged in late 2019 and still become a worldwide pandemic up to this point with the drug remain unavailable. Meanwhile, Indonesia has an abundance variety of medicinal plants that are potential to be developed as inhibitors. By using the key role proteins as drug targets, namely spike glycoprotein and RNA-dependent RNA polymerase (RdRp) of delta variant of SARS-CoV-2 (which is known as strongly transmitted and highly virulent), we can develop inhibitors for the target proteins from potential Indonesian medicinal plants to prevent the protein interactions for viral entry and proliferation that leading to organ disfunction and death. This study aimed to identify the secondary metabolites of various Indonesian medicinal plants as SARS-CoV-2 inhibitors. The 184 ligands from nine plants were collected from IJAH webserver and their SMILES notation were collected from PubChem. Meanwhile 3D structures of spike glycoprotein (PDB ID: 6VXX) and RdRp (PDB ID: 6M71) were obtained from protein data bank (PDB). Molecular docking was conducted between ligands and the two SARS-CoV-2 proteins using Autodock Vina in PyRx with hesperidin and remdesivir as control compounds. Several potential compounds were selected for drug-likeness analysis and toxicity analysis. Results showed that lantanolic acid has the same amino acid interaction with RdRp as the control compound. It formed a hydrogen bond with Ser784 and hydrophobic bonds with Tyr32 and Ser7709. It had lower binding affinity than the control compounds, eligible as oral drug, and had LD50 of 2589 mg/kg.
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多种印尼药用植物作为SARS-CoV-2抑制剂的次生代谢物:硅研究
由SARS-CoV-2感染引起的2019年冠状病毒病于2019年底出现,到目前为止仍成为全球大流行,药物仍然无法获得。同时,印尼拥有丰富的药用植物品种,具有开发抑制剂的潜力。通过利用SARS-CoV-2 δ型变异(强传播和高毒力)的刺突糖蛋白和RNA依赖RNA聚合酶(RdRp)等关键作用蛋白作为药物靶点,我们可以从潜在的印度尼西亚药用植物中开发靶蛋白抑制剂,以防止病毒进入和增殖导致器官功能障碍和死亡的蛋白质相互作用。本研究旨在鉴定印度尼西亚多种药用植物的次生代谢物作为SARS-CoV-2抑制剂。来自9种植物的184个配体来自IJAH网站,它们的SMILES标记来自PubChem。同时从蛋白数据库(PDB)中获得了刺突糖蛋白(PDB ID: 6VXX)和RdRp (PDB ID: 6M71)的三维结构。采用Autodock Vina in PyRx,以橙皮苷和瑞德西韦为对照化合物,进行配体与两种SARS-CoV-2蛋白的分子对接。筛选出几个潜在化合物进行药物相似性分析和毒性分析。结果表明,lanantolic酸与RdRp的氨基酸相互作用与对照化合物相同。它与Ser784形成氢键,与Tyr32和Ser7709形成疏水键。其结合亲和力低于对照化合物,可作为口服药物,LD50为2589 mg/kg。
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