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一种应用于研究登革热病毒蛋白酶 NS2B/NS3 潜在别构抑制剂的计算方法。

A Computational Approach Applied to the Study of Potential Allosteric Inhibitors Protease NS2B/NS3 from Dengue Virus.

机构信息

Graduate Program in Science and Environment, Institute of Exact and Natural Sciences, Federal University of Pará (UFPA), Belém 66075-110, PA, Brazil.

Federal Institute of Education, Science and Technology of Pará Campus Castanhal, Castanhal 68740-970, PA, Brazil.

出版信息

Molecules. 2022 Jun 27;27(13):4118. doi: 10.3390/molecules27134118.

Abstract

Dengue virus (DENV) is a danger to more than 400 million people in the world, and there is no specific treatment. Thus, there is an urgent need to develop an effective method to combat this pathology. NS2B/NS3 protease is an important biological target due it being necessary for viral replication and the fact that it promotes the spread of the infection. Thus, this study aimed to design DENV NS2B/NS3pro allosteric inhibitors from a matrix compound. The search was conducted using the Swiss Similarity tool. The compounds were subjected to molecular docking calculations, molecular dynamics simulations (MD) and free energy calculations. The molecular docking results showed that two compounds, ZINC000001680989 and ZINC000001679427, were promising and performed important hydrogen interactions with the Asn152, Leu149 and Ala164 residues, showing the same interactions obtained in the literature. In the MD, the results indicated that five residues, Lys74, Leu76, Asn152, Leu149 and Ala166, contribute to the stability of the ligand at the allosteric site for all of the simulated systems. Hydrophobic, electrostatic and van der Waals interactions had significant effects on binding affinity. Physicochemical properties, lipophilicity, water solubility, pharmacokinetics, druglikeness and medicinal chemistry were evaluated for four compounds that were more promising, showed negative indices for the potential penetration of the Blood Brain Barrier and expressed high human intestinal absorption, indicating a low risk of central nervous system depression or drowsiness as the the side effects. The compound ZINC000006694490 exhibited an alert with a plausible level of toxicity for the purine base chemical moiety, indicating hepatotoxicity and chromosome damage in vivo in mouse, rat and human organisms. All of the compounds selected in this study showed a synthetic accessibility (SA) score lower than 4, suggesting the ease of new syntheses. The results corroborate with other studies in the literature, and the computational approach used here can contribute to the discovery of new and potent anti-dengue agents.

摘要

登革热病毒(DENV)对全球 4 亿多人构成威胁,目前尚无特效疗法。因此,迫切需要开发有效的方法来对抗这种疾病。NS2B/NS3 蛋白酶是一个重要的生物学靶点,因为它是病毒复制所必需的,并且促进了感染的传播。因此,本研究旨在从基质化合物中设计 DENV NS2B/NS3pro 别构抑制剂。使用 Swiss Similarity 工具进行搜索。对化合物进行分子对接计算、分子动力学模拟(MD)和自由能计算。分子对接结果表明,两种化合物 ZINC000001680989 和 ZINC000001679427 具有潜力,并与 Asn152、Leu149 和 Ala164 残基发生重要的氢键相互作用,表现出与文献中相同的相互作用。在 MD 中,结果表明,五个残基 Lys74、Leu76、Asn152、Leu149 和 Ala166,对所有模拟系统中配体在变构部位的稳定性有贡献。疏水、静电和范德华相互作用对结合亲和力有显著影响。对四个更有前途的化合物进行了物理化学性质、脂溶性、水溶性、药代动力学、类药性和药物化学评价,这些化合物的负指数表明穿透血脑屏障的潜力较低,并且表达了高的人类肠道吸收,表明作为副作用中枢神经系统抑制或嗜睡的风险较低。化合物 ZINC000006694490 对嘌呤碱基化学部分表现出合理的毒性警示,表明在体内的小鼠、大鼠和人体组织中具有肝毒性和染色体损伤。本研究中选择的所有化合物的合成可及性(SA)评分均低于 4,表明新合成的容易程度。结果与文献中的其他研究相符,并且此处使用的计算方法可以为发现新的有效的抗登革热药物做出贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ad7/9268547/9ac6c8cb6ca1/molecules-27-04118-g001.jpg

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