Drummondin E and Flinderole B are potential inhibitors of RNA-dependent RNA polymerase of SARS-CoV-2: an in silico study.

Q3 Agricultural and Biological Sciences BioTechnologia Pub Date : 2022-01-01 DOI:10.5114/bta.2022.113915
Nahid Akhtar, Himanshu Verma, O M Silkari, Atul K Upadhyay, Vikas Kaushik, M Amin-Ul Mannan
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引用次数: 2

Abstract

Coronavirus disease 2019 caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) has affected 235.6 million people worldwide. In the present study, RNA-dependent RNA polymerase (RdRp) (PDB Id: 6M71) of SARS-CoV-2, an essential enzyme needed for subgenomic replication and amplification of RNA, was selected. Similar to other RdRps, it is a conserved protein and a popular target for antiviral drug therapy. Based on a computational approach, potential RdRp inhibitors were identified. The absorption, distribution, metabolism, excretion, and toxicity (ADMET) of selected molecules were determined using computation tools. The potential inhibitors were docked to the RdRp and later confirmed by Molecular Dynamics (MD) using the "Flare" module of Cresset software. Drummondin E and Flinderole B had higher drug similarity scores among the compounds selected in this study. Both these compounds are noncarcinogenic, nonirritant, nontumorigenic, and nonmutagenic. Molecular docking studies showed that both compounds can bind to RdRp. The best ligand interaction patterns were validated by MD using the "Flare" module. MD was performed for the period of 100 ns with the time step of 1 fs. The simulation results suggest that Thr-680, Arg-624, Lys-676, and Val-557 are key interacting partners in the Drummondin E-RdRp complex, while Asp-618, Asp-760, Asp-623, Arg-624, and Asp-761 are the interacting partners in the Flinderole B-RdRp complex. Based on the in silico drug-likeness score; ADMET properties; and molecular simulation result, we surmise that Flinderole B and Drummondin E could impede SARS-CoV-2 genome replication and transcription by targeting the RdRp protein.

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Drummondin E和Flinderole B是SARS-CoV-2 RNA依赖性RNA聚合酶的潜在抑制剂:一项计算机研究
由严重急性呼吸综合征冠状病毒2型(SARS-CoV-2)引起的2019冠状病毒病已影响到全球2.356亿人。本研究选择了SARS-CoV-2的RNA依赖性RNA聚合酶(RdRp) (PDB Id: 6M71),这是RNA亚基因组复制和扩增所必需的酶。与其他RdRps类似,它是一种保守蛋白,也是抗病毒药物治疗的热门靶点。基于计算方法,确定了潜在的RdRp抑制剂。利用计算工具测定所选分子的吸收、分布、代谢、排泄和毒性(ADMET)。潜在的抑制剂被对接到RdRp上,随后使用Cresset软件的“Flare”模块由分子动力学(MD)进行确认。Drummondin E和Flinderole B在本研究选择的化合物中具有较高的药物相似性得分。这两种化合物都是非致癌性、非刺激性、非致瘤性和非致突变性的。分子对接研究表明,这两种化合物都能与RdRp结合。用“Flare”模块对最佳配体相互作用模式进行了MD验证。MD时间为100 ns,时间步长为1 fs。模拟结果表明,Thr-680、Arg-624、Lys-676和Val-557是Drummondin E-RdRp配合物的主要相互作用伙伴,而Asp-618、Asp-760、Asp-623、Arg-624和Asp-761是Flinderole B-RdRp配合物的主要相互作用伙伴。基于计算机药物相似度评分;ADMET性质;结合分子模拟结果,我们推测Flinderole B和Drummondin E可能通过靶向RdRp蛋白抑制SARS-CoV-2基因组复制和转录。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BioTechnologia
BioTechnologia Agricultural and Biological Sciences-Plant Science
CiteScore
1.60
自引率
0.00%
发文量
8
审稿时长
8 weeks
期刊介绍: BIOTECHNOLOGIA – a high standard, peer-reviewed, quarterly magazine, providing a medium for the rapid publication of research reports and review articles on novel and innovative aspects of biotechnology, computational biology and bionanotechnology.
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