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鞣花酸作为寨卡病毒非结构蛋白 NS3 解旋酶抑制剂的潜力:一项分子建模研究。

Ellagic Acid as a Potential Inhibitor against the Nonstructural Protein NS3 Helicase of Zika Virus: A Molecular Modelling Study.

机构信息

Department of Research, Panimalar Medical College Hospital & Research Institute, Varadharajapuram, Poonamallee, Chennai 600 123, India.

Department of Chemistry, Panimalar Institute of Technology, Poonamallee, Chennai, 600 123 Tamil Nadu, India.

出版信息

Biomed Res Int. 2022 Aug 21;2022:2044577. doi: 10.1155/2022/2044577. eCollection 2022.

Abstract

Zika virus is a member of the Flaviviridae family and genus Flavivirus, which has a phylogenetic relationship with spondweni virus. It spreads to humans through a mosquito bite. To identify potential inhibitors for the Zika virus with biosafety, we selected natural antiviral compounds isolated from plant sources and screened against NS3 helicase of the Zika virus. The enzymatic activity of the NS3 helicase is associated with the C-terminal region and is concerned with RNA synthesis and genome replication. It serves as a crucial target for the Zika virus. We carried out molecular docking for the target NS3 helicase against the selected 25 phytochemicals using AutoDock Vina software. Among the 25 plant compounds, we identified NS3 helicase-ellagic acid (-9.9 kcal/mol), NS3 helicase-hypericin (-9.8 kcal/mol), and NS3 helicase-pentagalloylglucose (-9.5 kcal/mol) as the best binding affinity compounds based on their binding energies. To understand the stability of these complexes, molecular dynamic simulations were executed and the trajectory analysis exposed that the NS3 helicase-ellagic acid complex possesses greater stability than the other two complexes such as NS3 helicase-hypericin and NS3 helicase-pentagalloylglucose. The ADMET property prediction of these compounds resulted in nontoxicity and noncarcinogenicity.

摘要

Zika 病毒属于黄病毒科黄病毒属,与斯盘度病毒亲缘关系密切。它通过蚊子叮咬传播给人类。为了寻找具有生物安全性的 Zika 病毒潜在抑制剂,我们选择了从植物中分离得到的天然抗病毒化合物,并对 Zika 病毒的 NS3 解旋酶进行了筛选。NS3 解旋酶的酶活性与 C 末端区域相关,与 RNA 合成和基因组复制有关。它是 Zika 病毒的一个关键靶点。我们使用 AutoDock Vina 软件对靶标 NS3 解旋酶与 25 种植物化合物进行了分子对接。在 25 种植物化合物中,根据结合能,我们确定 NS3 解旋酶-鞣花酸(-9.9 kcal/mol)、NS3 解旋酶-金丝桃素(-9.8 kcal/mol)和 NS3 解旋酶-五没食子酰葡萄糖(-9.5 kcal/mol)为具有最佳结合亲和力的化合物。为了了解这些复合物的稳定性,我们进行了分子动力学模拟,轨迹分析表明,NS3 解旋酶-鞣花酸复合物比 NS3 解旋酶-金丝桃素和 NS3 解旋酶-五没食子酰葡萄糖复合物更稳定。这些化合物的 ADMET 性质预测结果表明它们无毒性和非致癌性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d53/9420600/fb0d40f79dae/BMRI2022-2044577.001.jpg

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