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L. 的几种植物化学成分可能通过对接、DFT 和分子动力学模拟抗 DENV-2。

Selected phytochemicals of L. as potential anti-DENV-2 through the docking, DFT and molecular dynamic simulation.

机构信息

Bio Aromatic Research Centre, Universiti Malaysia Pahang Al-Sultan Abdullah, Lebuhraya Tun Razak, Kuantan, Malaysia.

Department of Pharmacy, School of Medicine, University of Asia Pacific 74/A, Dhaka, Bangladesh.

出版信息

J Biomol Struct Dyn. 2024 Nov;42(18):9325-9336. doi: 10.1080/07391102.2023.2251069. Epub 2023 Sep 7.

Abstract

Dengue fever is now one of the major global health concerns particularly for tropical and sub-tropical countries. However, there has been no FDA approved medication to treat dengue fever. Researchers are looking into DENV NS5 RdRp protease as a potential therapeutic target for discovering effective anti-dengue agents. The aim of this study to discover dengue virus inhibitor from a set of five compounds from L. using a series of approaches. The compounds were docked into the active area of the DENV-2 NS5 RdRp protease to obtain the hit compounds. The successful compounds underwent additional testing for a study on drug-likeness similarity. Our study obtained Momordicoside-I as a lead compound which was further exposed to the Cytochrome P450 (CYP450) toxicity analysis to determine the toxicity based on docking scores and drug-likeness studies. Moreover, DFT studies were carried out to calculate the thermodynamic, molecular orbital and electrostatic potential properties for the lead compound. Moreover, the lead compound was next subjected to molecular dynamic simulation for 200 ns in order to confirm the stability of the docked complex and the binding posture discovered during docking experiment. Overall, the lead compound has demonstrated good medication like qualities, non-toxicity, and significant binding affinity towards the DENV-2 RdRp enzyme.Communicated by Ramaswamy H. Sarma.

摘要

登革热目前是全球主要的卫生关注点之一,特别是在热带和亚热带国家。然而,目前还没有获得 FDA 批准的药物来治疗登革热。研究人员正在研究 DENV NS5 RdRp 蛋白酶作为发现有效抗登革热药物的潜在治疗靶点。本研究旨在从一组 5 种化合物中发现登革热病毒抑制剂,使用一系列方法。将化合物对接进入 DENV-2 NS5 RdRp 蛋白酶的活性区域,以获得命中化合物。成功的化合物进行了额外的药物相似性测试研究。我们的研究获得了苦瓜皂甙 I 作为先导化合物,进一步进行细胞色素 P450 (CYP450) 毒性分析,根据对接评分和药物相似性研究确定毒性。此外,还进行了密度泛函理论 (DFT) 研究,以计算先导化合物的热力学、分子轨道和静电势能特性。此外,将先导化合物进一步进行 200ns 的分子动力学模拟,以确认对接实验中发现的对接复合物的稳定性和结合姿势。总体而言,该先导化合物表现出良好的药物特性、非毒性和对 DENV-2 RdRp 酶的显著结合亲和力。由 Ramaswamy H. Sarma 传达。

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