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研究来自海洋细菌的Pb2帽结合域抑制剂对甲型H5N1流感病毒的靶向作用。

Investigating Pb2 CAP-binding domain inhibitors from marine bacteria for targeting the influenza A H5N1.

作者信息

Kumosani Taha A, Abbas Aymn T, Basheer Balogun, Hassan Ahmed M, Yaghmoor Soonham S, Alyahiby Areej H, Asseri Amer H, Dwivedi Vivek Dhar, Azhar Esam I

机构信息

Biochemistry Department, Faculty of Science, King Abdulaziz University, Jeddah, Saudi Arabia.

Experimental Biochemistry Unit, King Fahd Medical Research Center, King Abdulaziz University, Jeddah, Saudi Arabia.

出版信息

PLoS One. 2025 Jan 28;20(1):e0310836. doi: 10.1371/journal.pone.0310836. eCollection 2025.

Abstract

The ongoing increase in the prevalence and mutation rate of the influenza virus remains a critical global health issue. A promising strategy for antiviral drug development involves targeting the RNA-dependent RNA polymerase, specifically the PB2-cap binding domain of Influenza A H5N1. This study employs an in-silico approach to inhibit this domain, crucial for viral replication, using potential inhibitors derived from marine bacterial compounds. Utilizing the MTi-OpenScreen web server, we screened a library of compounds to assess their molecular interactions with the target. This process identified four potential inhibitors: CMNPD25830, CMNPD18675, CMNPD18676, and CMNPD27216. Subsequent molecular dynamics simulations, conducted using the Amber software suite, evaluated their binding affinities and dynamic interactions with the PB2 protein. Notably, CMNPD25830 and CMNPD27216 emerged as the most promising candidates, exhibiting higher binding affinities and more favourable interaction profiles compared to the control molecule. Additional analyses, including post-simulation free energy calculations and free energy landscape analysis, strengthened the potential of these compounds as effective PB2-cap binding domain inhibitors. This comprehensive computational investigation identifies CMNPD27216 and CMNPD25830 as standout candidates due to their superior binding energies and dynamic stability, suggesting their strong potential as therapeutic agents against influenza. This research sets the stage for further in vitro validation and optimization of these lead compounds, potentially supporting the development of more effective influenza treatments.

摘要

流感病毒的流行率和突变率持续上升,仍然是一个关键的全球健康问题。抗病毒药物开发的一个有前景的策略是靶向依赖RNA的RNA聚合酶,特别是甲型H5N1流感病毒的PB2帽结合结构域。本研究采用计算机模拟方法,使用源自海洋细菌化合物的潜在抑制剂来抑制这一对于病毒复制至关重要的结构域。利用MTi-OpenScreen网络服务器,我们筛选了一个化合物库,以评估它们与靶点的分子相互作用。这一过程确定了四种潜在抑制剂:CMNPD25830、CMNPD18675、CMNPD18676和CMNPD27216。随后使用Amber软件套件进行的分子动力学模拟,评估了它们与PB2蛋白的结合亲和力和动态相互作用。值得注意的是,CMNPD25830和CMNPD27216成为最有前景的候选物,与对照分子相比,它们表现出更高的结合亲和力和更有利的相互作用特征。包括模拟后自由能计算和自由能景观分析在内的额外分析,强化了这些化合物作为有效PB2帽结合结构域抑制剂的潜力。这项全面的计算研究确定CMNPD27216和CMNPD25830是突出的候选物,因为它们具有卓越的结合能和动态稳定性,表明它们作为抗流感治疗药物具有强大潜力。这项研究为进一步体外验证和优化这些先导化合物奠定了基础,有可能支持开发更有效的流感治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abc2/11774345/1be1c46feca9/pone.0310836.g001.jpg

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