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使用吡喃并恶唑抑制基孔肯雅病毒nsP3蛋白酶的理论模型的建立

Development of a theoretical model for the inhibition of nsP3 protease of Chikungunya virus using pyranooxazoles.

作者信息

Kumar Durgesh, Kumari Kamlesh, Jayaraj Abhilash, Singh Prashant

机构信息

Department of Chemistry, A.R.S.D. College, University of Delhi, New Delhi, India.

Department of Chemistry, University of Delhi, New Delhi, India.

出版信息

J Biomol Struct Dyn. 2020 Jul;38(10):3018-3034. doi: 10.1080/07391102.2019.1650830. Epub 2019 Aug 13.

DOI:10.1080/07391102.2019.1650830
PMID:31366291
Abstract

Chikungunya virus (CHIKV) causes Chikungunya fever (CHIKF) and till date no effective medicine for its cure is available in market. Different research groups find various possible interactions between small molecules and non-structural proteins, viz. nsP3, one of the most important viral elements in CHIKV. In this work, authors have studied the interactions of nsP3 protease of CHIKV with pyranooxazoles. Initially, a one-pot three-component reaction was designed using oxazolidine-2,4-dione, benzaldehyde and cyanoethylacetate to get a proposed biological active molecule, i.e. based on pyranooxazoles. The mechanism for the synthesis of the product based on pyranooxazole was studied through density functional theory (DFT) using Gaussian. Then, a library of the obtained pyranooxazole was created through computational tools by varying the substituents. Further, virtual screening of the designed library of pyranooxazoles (200 compounds) against nsP3 protease of CHIKV was performed. Herein, CMPD 104 showed strongest binding affinity toward the targeted nsP3 protease of CHIKV, based on the least binding energy obtained from docking. Based on docking results, the pharmacological, toxicity, biological score and Lipinski's filters were studied. Further, DFT studies of top five compounds were done using Gaussian. Molecular dynamics (MD) simulation of nsP3 protease of CHIKV with and without 104 was performed using AMBER18 utilizing ff14SB force field in three steps (minimization, equilibration and production). This work is emphasized to designing of one-pot three-component synthesis and to develop a theoretical model to inhibit the nsP3 protease of CHIKV. AbbreviationsCHIKFChikungunya feverCHIKVChikungunya virusDFTdensity functional theoryDSDiscovery StudioMDmolecular dynamicsMM-GBSAmolecular mechanics-generalized born surface areaMMVMolegro molecular viewerCommunicated by Ramaswamy H. Sarma.

摘要

基孔肯雅病毒(CHIKV)会引发基孔肯雅热(CHIKF),迄今为止市场上尚无有效的治疗药物。不同的研究小组发现了小分子与非结构蛋白之间的各种可能相互作用,即nsP3,它是CHIKV中最重要的病毒成分之一。在这项工作中,作者研究了CHIKV的nsP3蛋白酶与吡喃并恶唑的相互作用。最初,设计了一种使用恶唑烷-2,4-二酮、苯甲醛和氰基乙酸乙酯的一锅三组分反应,以获得一种基于吡喃并恶唑的拟生物活性分子。通过使用高斯软件的密度泛函理论(DFT)研究了基于吡喃并恶唑的产物合成机理。然后,通过改变取代基,利用计算工具创建了所得吡喃并恶唑的文库。此外,对设计的吡喃并恶唑文库(200种化合物)针对CHIKV的nsP3蛋白酶进行了虚拟筛选。在此,基于对接获得的最低结合能,化合物104对CHIKV的靶向nsP3蛋白酶表现出最强的结合亲和力。基于对接结果,研究了药理学、毒性、生物学评分和类药五原则筛选。此外,使用高斯软件对排名前五的化合物进行了DFT研究。使用AMBER18并利用ff14SB力场,分三步(最小化、平衡和生产)对有和没有104的CHIKV的nsP3蛋白酶进行了分子动力学(MD)模拟。这项工作着重于一锅三组分合成的设计,并开发一种抑制CHIKV的nsP3蛋白酶的理论模型。

缩写

CHIKF 基孔肯雅热

CHIKV 基孔肯雅病毒

DFT 密度泛函理论

DS Discovery Studio

MD 分子动力学

MM-GBSA 分子力学-广义玻恩表面积

MMV Molegro分子可视化软件

由拉马斯瓦米·H·萨尔马传达

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