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O-鼠李糖苷和山柰酚-O-鼠李糖苷衍生物对猴痘和马尔堡病毒感染的机制抑制:一种新颖的计算方法。

Mechanistic inhibition of Monkeypox and Marburg virus infection by O-rhamnosides and Kaempferol-o-rhamnosides derivatives: a new-fangled computational approach.

机构信息

Biophysics and Biomedicine Research Lab, Department of Electrical & Electronic Engineering, Islamic University, Kushtia, Bangladesh.

Laboratory of Computational Research for Drug Design and Material Science, Department of Chemistry, European University of Bangladesh, Dhaka, Bangladesh.

出版信息

Front Cell Infect Microbiol. 2023 May 24;13:1188763. doi: 10.3389/fcimb.2023.1188763. eCollection 2023.

Abstract

The increasing incidence of Monkeypox virus (Mpox) and Marburg virus (MARV) infections worldwide presents a significant challenge to global health, as limited treatment options are currently available. This study investigates the potential of several O-rhamnosides and Kaempferol-O-rhamnosides as Mpox and MARV inhibitors using molecular modeling methods, including ADMET, molecular docking, and molecular dynamics/MD simulation. The effectiveness of these compounds against the viruses was assessed using the Prediction of Activity Spectra for Substances (PASS) prediction. The study's primary focus is molecular docking prediction, which demonstrated that ligands (L07, L08, and L09) bind to Mpox (PDB ID: 4QWO) and MARV (PDB ID: 4OR8) with binding affinities ranging from -8.00 kcal/mol to -9.5 kcal/mol. HOMO-LUMO based quantum calculations were employed to determine the HOMO-LUMO gap of frontier molecular orbitals (FMOs) and to estimate chemical potential, electronegativity, hardness, and softness. Drug similarity and ADMET prediction assessments of pharmacokinetic properties revealed that the compounds were likely non-carcinogenic, non-hepatotoxic, and rapidly soluble. Molecular dynamic (MD) modeling was used to identify the most favorable docked complexes involving bioactive chemicals. MD simulations indicate that varying types of kaempferol-O-rhamnoside are necessary for successful docking validation and maintaining the stability of the docked complex. These findings could facilitate the discovery of novel therapeutic agents for treating illnesses caused by the Mpox and MARV viruses.

摘要

猴痘病毒 (Mpox) 和马尔堡病毒 (MARV) 在全球范围内感染率不断上升,对全球健康构成了重大挑战,因为目前可用的治疗选择有限。本研究使用分子建模方法,包括 ADMET、分子对接和分子动力学/MD 模拟,研究了几种 O-鼠李糖苷和山柰酚-O-鼠李糖苷作为 Mpox 和 MARV 抑制剂的潜力。使用预测活性光谱的物质 (PASS) 预测评估了这些化合物对病毒的有效性。该研究的主要重点是分子对接预测,该预测表明配体 (L07、L08 和 L09) 与 Mpox (PDB ID: 4QWO) 和 MARV (PDB ID: 4OR8) 结合的亲和力范围为-8.00 kcal/mol 至-9.5 kcal/mol。基于 HOMO-LUMO 的量子计算用于确定前线分子轨道 (FMO) 的 HOMO-LUMO 能隙,并估算化学势、电负性、硬度和软度。药物相似性和 ADMET 预测评估的药代动力学特性表明,这些化合物可能是非致癌性、非肝毒性和快速可溶性的。分子动力学 (MD) 建模用于识别涉及生物活性化学物质的最有利的对接复合物。MD 模拟表明,不同类型的山柰酚-O-鼠李糖苷对于成功的对接验证和保持对接复合物的稳定性是必要的。这些发现可以促进发现治疗由 Mpox 和 MARV 病毒引起的疾病的新型治疗剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f35/10245557/f2cff5e83aa5/fcimb-13-1188763-g001.jpg

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