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用于抗击埃博拉病毒病的药物重新利用研究:数据库挖掘、对接计算、分子动力学和密度泛函理论研究

Drug Repurposing Investigation for Combating Ebola Virus Disease: Database Mining, Docking Calculations, Molecular Dynamics, and Density Functional Theory Study.

作者信息

Abdelrahman Alaa H M, Mekhemer Gamal A H, Sidhom Peter A, El-Tayeb Mohamed A, Khan Shahzeb, Ibrahim Mahmoud A A

机构信息

Computational Chemistry Laboratory, Chemistry Department, Faculty of Science, Minia University, Minia, 61519, Egypt.

Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Tanta University, Tanta, 31527, Egypt.

出版信息

ChemistryOpen. 2025 Sep 2:e202500348. doi: 10.1002/open.202500348.

Abstract

Ebola virus (EBOV), one of the deadliest diseases, is responsible for infecting individuals with hemorrhagic fever syndrome, which remains an ongoing worldwide health concern. The extremely deadly nature and virulence of EBOV illness illuminate the imperative need to evolve effective curative agents. Viral protien (VP35) acts as an Achilles heel for EBOV reproduction and also interacts with numerous human proteins, which leads to impairing the immune system. Herein, the DrugBank database, containing >14000 investigational and approved drugs, is mined to hunt prospective inhibitors toward VP35 utilizing various computational approaches. Docking technique performance is initially validated to predict the VP35-inhibitor binding pose upon the accessible experimental data. Molecular dynamics simulations (MDS) are then conducted in triplicate on the top potent drug candidates, followed by binding energy (ΔG) estimations using molecular mechanics/generalized Born surface area (MM/GBSA) approach. Upon MM/GBSA//250 ns MDS, DB14875 and DB07800 revealed better binding energy against VP35 than 1D9, reference inhibitor, with ΔG values of -36.6, -35.6, and -29.3 kcal mol, respectively. Post-MD analyses demonstrate great stability for the identified drug candidates complexed with VP35 over 250 ns MDS. Ultimately, the density functional theory computations are executed, and their outcomes elucidate favorable molecular reactivity of the identified drug candidates. Conclusively, these findings suggest promising inhibitors for VP35, warranting further experimental assays.

摘要

埃博拉病毒(EBOV)是最致命的疾病之一,会导致个体感染出血热综合征,这仍是全球持续关注的健康问题。EBOV疾病极其致命的性质和毒力凸显了研发有效治疗药物的迫切需求。病毒蛋白(VP35)是EBOV复制的致命弱点,还与多种人类蛋白质相互作用,从而损害免疫系统。在此,利用各种计算方法挖掘包含超过14000种研究性和已批准药物的DrugBank数据库,以寻找针对VP35的潜在抑制剂。首先根据可获取的实验数据验证对接技术性能,以预测VP35-抑制剂的结合构象。然后对最有潜力的候选药物进行三次重复的分子动力学模拟(MDS),接着使用分子力学/广义玻恩表面积(MM/GBSA)方法估算结合能(ΔG)。在MM/GBSA//250 ns MDS模拟中,DB14875和DB07800对VP35的结合能比参考抑制剂1D9更好,其ΔG值分别为-36.6、-35.6和-29.3 kcal/mol。MD模拟后的分析表明,在250 ns MDS模拟中,所鉴定的候选药物与VP35形成的复合物具有很高的稳定性。最终进行密度泛函理论计算,其结果阐明了所鉴定候选药物良好的分子反应活性。总之,这些发现表明了针对VP35的有前景的抑制剂,值得进一步进行实验分析。

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