登革热病毒
登革热
对接(动物)
虚拟筛选
生物信息学
NS3型
化学
计算生物学
分子动力学
数量结构-活动关系
小分子
立体化学
计算化学
病毒学
生物
生物化学
蛋白酶
医学
酶
基因
护理部
作者
Mst. Sharmin Sultana Shimu,Shafi Mahmud,Trina Ekawati Tallei,Saad Ahmed Sami,Ahmad Akroman Adam,Uzzal Kumar Acharjee,Gobindo Kumar Paul,Talha Bin Emran,Shahriar Zaman,Md. Salah Uddin,Md. Abu Saleh,Sultan Alshehri,Mohammed M. Ghoneim,Maha Alruwali,Ahmad J. Obaidullah,Nabilah Rahman Jui,Jung Hwan Kim,Bonglee Kim
出处
期刊:Molecules
[MDPI AG]
日期:2022-01-20
卷期号:27 (3): 653-653
被引量:13
标识
DOI:10.3390/molecules27030653
摘要
The spread of the Dengue virus over the world, as well as multiple outbreaks of different serotypes, has resulted in a large number of deaths and a medical emergency, as no viable medications to treat Dengue virus patients have yet been found. In this paper, we provide an in silico virtual screening and molecular dynamics-based analysis to uncover efficient Dengue infection inhibitors. Based on a Google search and literature mining, a large phytochemical library was generated and employed as ligand molecules. In this investigation, the protein target NS2B/NS3 from Dengue was employed, and around 27 compounds were evaluated in a docking study. Phellodendroside (-63 kcal/mole), quercimeritrin (-59.5 kcal/mole), and quercetin-7-O-rutinoside (-54.1 kcal/mole) were chosen based on their binding free energy in MM-GBSA. The tested compounds generated numerous interactions at Lys74, Asn152, and Gln167 residues in the active regions of NS2B/NS3, which is needed for the protein's inhibition. As a result, the stable mode of docked complexes is defined by various descriptors from molecular dynamics simulations, such as RMSD, SASA, Rg, RMSF, and hydrogen bond. The pharmacological properties of the compounds were also investigated, and no toxicity was found in computational ADMET properties calculations. As a result, this computational analysis may aid fellow researchers in developing innovative Dengue virus inhibitors.
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