The design of bioactive marine peptides as a HIV-1 protease inhibitor

T. M. Fakih, Mentari Luthfika Dewi
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Abstract

Background: Human immunodeficiency virus/acquired immunodeficiency syndrome (HIV or AIDS) is a disease related to the human immune system. Given its important role in viral replication, HIV1 protease (HIV1 PR) becomes the major therapeutic target in the treatment of AIDS. In this case, we need a dynamic aspect of molecular interactions that can demonstrate the important role of conformational variability in the design of HIV1 PR inhibitors. There are several inhibitor candidates from marine organisms, such as the LLEYSL and LLEYSI bioactive peptides produced by oysters (Crassostrea gigas). Objective: Proteinpeptide docking method was used in silico to identify, evaluate, and explore the molecular interactions between bioactive peptide molecules and HIV-1 protease macromolecules. Methods: The sequencing of bioactive peptide molecules was modeled into 3D conformation using the PEPFOLD software. The best conformation was chosen for the study of molecular interactions against HIV1 protease macromolecules using the PatchDock software. The molecular interactions formed were further observed using the BIOVIA Discovery Studio 2020 software. Results: The results of this study indicated that the LLEYSL bioactive peptide had the best affinity with an ACE score of minus 1284.70 kJ per mol. Conclusion: Bioactive peptide molecule is predicted to be a candidate for HIV1 protease inhibitor. Keywords: AIDS, HIV1 protease, bioactive peptides, protein-peptide docking, in silico
生物活性海洋多肽作为HIV-1蛋白酶抑制剂的设计
背景:人类免疫缺陷病毒/获得性免疫缺陷综合征(HIV或AIDS)是一种与人体免疫系统有关的疾病。鉴于其在病毒复制中的重要作用,hiv - 1蛋白酶(HIV1 PR)成为治疗艾滋病的主要治疗靶点。在这种情况下,我们需要分子相互作用的动态方面,可以证明构象变异性在设计hiv - 1 PR抑制剂中的重要作用。海洋生物中有几种候选抑制剂,如牡蛎(长牡蛎)产生的LLEYSL和LLEYSI生物活性肽。目的:利用蛋白肽对接方法在计算机上鉴定、评价和探索生物活性肽分子与HIV-1蛋白酶大分子之间的分子相互作用。方法:利用PEPFOLD软件将生物活性肽分子序列建模成三维构象。利用PatchDock软件选择最佳构象用于研究与hiv - 1蛋白酶大分子的分子相互作用。利用BIOVIA Discovery Studio 2020软件进一步观察形成的分子相互作用。结果:本研究结果表明LLEYSL生物活性肽具有最佳亲和力,ACE评分为- 1284.70 kJ / mol。结论:生物活性肽分子有望成为hiv - 1蛋白酶抑制剂的候选分子。关键词:艾滋病;hiv - 1蛋白酶;生物活性肽
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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