利用特异性抗病毒肽抑制口蹄疫病毒的 VP1 蛋白:一项硅学研究。

Q3 Veterinary
Archives of Razi Institute Pub Date : 2023-10-31 eCollection Date: 2023-10-01 DOI:10.22092/ARI.2023.78.5.1483
Forouharmehr Ali, Nazifi Narges, Jaydari Amin
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引用次数: 0

摘要

口蹄疫是畜牧业面临的重要威胁之一,会导致巨大的经济损失。为此,本项目旨在利用特异性多肽抑制口蹄疫病毒的 VP1 蛋白。为此,我们从数据库中收集了大量潜在的抗病毒多肽。利用可靠的服务器调查了潜在抗病毒多肽的理化性质、疏水性/亲水性和溶解性。随后,I-TASSER 服务器对所选多肽与 VP1 蛋白的三级结构进行了建模。此外,还使用 ClusPro 2.0 服务器研究了 VP1 蛋白与所选抗病毒肽之间的相互作用。最后,分子对接的结果由 LigPlot+ 进行评估,并由 PyMol 软件进行可视化。结果显示,疏水性大于30的Dermaseptin-3、Ginkbilobin、Circulin-F、Maximin1、Cyclloviolin-A、Cyclloviolin-D、Circulin-C、Cyclloviolin-C和抗高血压蛋白BDS-1肽具有正不稳定指数和正净电荷的可溶性。此外,分子对接过程的结果表明,Dermaseptin-3 和 Ginkbilobin 肽能利用 10 个氢键对 VP1 蛋白产生强烈的抑制作用。因此,这两种氢键最多的多肽被列为最佳抗口蹄疫病毒多肽。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Restraint of VP1 Protein of Foot and Mouth Disease Virus using Specific Antiviral Peptides: an in Silico Investigation.

Foot and mouth diseases are among the important threats in the animal husbandry industry which lead to huge economic losses. In this regard, the current project aimed to inhibit the VP1 protein of foot and mouth disease viruses using specific peptides. For this purpose, a wide range of potential antiviral peptides were collected from the database. Physicochemical properties, hydrophobicity/hydrophilicity, and solubility properties of potential antiviral peptides were investigated using reliable servers. Afterward, the tertiary structures of the selected peptides along with the VP1 protein were modeled by the I-TASSER server. Moreover, interactions between VP1 protein and selected antiviral peptides were investigated using the ClusPro 2.0 server. Finally, the outputs of molecular docking were assessed by LigPlot+ and visualized by PyMol software. The results revealed that Dermaseptin-3, Ginkbilobin, Circulin-F, Maximin1, Cycloviolin-A, Cycloviolin-D, Circulin-C, Cycloviolin-C, and Antihypertensive protein BDS-1 peptides with a hydrophobicity value of > 30 were soluble with positive instability index and positive net charge. Moreover, the results of the molecular docking process demonstrated that Dermaseptin-3 and Ginkbilobin peptides could strongly inhibit the VP1 protein using 10 hydrogen bonds. Therefore, these two peptides, which had the most hydrogen bonds, were introduced as the best anti-foot and mouth disease virus peptides to apply.

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来源期刊
Archives of Razi Institute
Archives of Razi Institute Veterinary-Veterinary (all)
CiteScore
1.50
自引率
0.00%
发文量
108
审稿时长
12 weeks
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