Department of Genetic Engineering and Biotechnology, University of Rajshahi, Rajshahi 6205, Bangladesh.
Microbiology Laboratory, Department of Genetic Engineering and Biotechnology, University of Rajshahi, Rajshahi 6205, Bangladesh.
Molecules. 2022 Jan 20;27(3):653. doi: 10.3390/molecules27030653.
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--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.
登革热病毒在全球的传播以及多种不同血清型的爆发,导致了大量的死亡和医疗紧急情况,因为目前还没有有效的药物来治疗登革热病毒患者。在本文中,我们提供了一种基于计算机虚拟筛选和分子动力学的分析方法,以发现有效的登革热感染抑制剂。通过谷歌搜索和文献挖掘,我们生成了一个大型的植物化学文库,并将其用作配体分子。在这项研究中,我们使用了登革热的 NS2B/NS3 蛋白作为靶标,对大约 27 种化合物进行了对接研究。根据 MM-GBSA 中的结合自由能,我们选择了黄柏苷(-63 kcal/mol)、槲皮素-3-O-新橙皮糖苷(-59.5 kcal/mol)和槲皮素-7-O-芦丁糖苷(-54.1 kcal/mol)作为候选化合物。测试的化合物在 NS2B/NS3 的活性区域与 Lys74、Asn152 和 Gln167 残基产生了许多相互作用,这是蛋白质抑制所必需的。因此,分子动力学模拟的各种描述符(如 RMSD、SASA、Rg、RMSF 和氢键)定义了对接复合物的稳定模式。我们还研究了化合物的药理学性质,在计算 ADMET 性质计算中没有发现毒性。因此,这项计算分析可能有助于研究人员开发创新的登革热病毒抑制剂。