Mechanistic insights into the Japanese encephalitis virus RNA dependent RNA polymerase protein inhibition by bioflavonoids from Azadirachta indica

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作者
Vivek Dhar Dwivedi
Ankita Singh
Sherif Aly El-Kafraway
Thamir A. Alandijany
Arwa A. Faizo
Leena Hussein Bajrai
Mohammad Amjad Kamal
Esam Ibraheem Azhar
机构
[1] Pathfinder Research and Training Foundation,Centre for Bioinformatics, Computational and Systems Biology
[2] Jawaharlal Nehru University,School of Environmental Sciences
[3] King Abdulaziz University,Special Infectious Agents Unit, King Fahd Medical Research Center
[4] King Abdulaziz University,Department of Medical Laboratory Technology, Faculty of Applied Medical Sciences
[5] King Abdulaziz University,Biochemistry Department, Faculty of Sciences
[6] Enzymoics,West China School of Nursing/Institutes for Systems Genetics, Frontiers Science Center for Disease
[7] Novel Global Community Educational Foundation,Related Molecular Network, West China Hospital
[8] Sichuan University,undefined
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Scientific Reports | / 11卷
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摘要
Japanese encephalitis (JE) virus is a flavivirus causing encephalitis causing neurological damage. RNA-dependent-RNA-polymerase (RdRp) is responsible for genome replication making it excellent anti-viral target. In this study, the crystal structure of JE RdRp (jRdRp) and bioflavonoids reported in Azadirachta indica were retrieved from specific databases. Structure-based virtual screening was employed using MTiOpenScreen server and top four compounds selected with the most negative docking scores. Conformations were redocked using AutoDock Vina; these complexes showed mechanistic interactions with Arg474, Gly605, Asp668, and Trp800 residues in the active site of jRdRp, i.e., guanosine-5′-triphosphate. Furthermore, 100 ns classical molecular dynamics simulation and binding free energy calculation showed stability of docked bioflavonoids in the active jRdRp pocket and significant contribution of van-der-Waals interactions for docked complex stability during simulation. Therefore, this study predicted the anti-viral activity of Gedunin, Nimbolide, Ohchinin acetate, and Kulactone against jRdRp and can be considered for further antiviral drug development.
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