Catalysis and Peptide Research Unit, School of Health Sciences, University of KwaZulu-Natal, Durban, South Africa.
Department of Chemistry, University of Florida, Gainesville, Florida, USA.
J Biomol Struct Dyn. 2022 Mar;40(4):1736-1747. doi: 10.1080/07391102.2020.1832578. Epub 2020 Oct 19.
HIV-1 protease (HIV-1 PR) is an essential enzyme for the replication process of its virus, and therefore considered an important target for the development of drugs against the acquired immunodeficiency syndrome (AIDS). Our previous study shows that the catalytic mechanism of subtype B/C-SA HIV-1 PR follows a one-step concerted acyclic hydrolysis reaction process using a two-layered ONIOM B3LYP/6-31++G(d,p) method. This present work is aimed at exploring the proposed mechanism of the proteolysis catalyzed by HIV-1 PR and to ensure our proposed mechanism is not an artefact of a single theoretical technique. Hence, we present umbrella sampling method that is suitable for calculating potential mean force (PMF) for non-covalent ligand/substrate-enzyme association/dissociation interactions which provide thermodynamic details for molecular recognition. The free activation energy results were computed in terms of PMF analysis within the hybrid QM(DFTB)/MM approach. The theoretical findings suggest that the proposed mechanism corresponds in principle with experimental data. Given our observations, we suggest that the QM/MM MD method can be used as a reliable computational technique to rationalize lead compounds against specific targets such as the HIV-1 protease.
HIV-1 蛋白酶(HIV-1 PR)是病毒复制过程中必不可少的酶,因此被认为是开发抗获得性免疫缺陷综合征(AIDS)药物的重要靶点。我们之前的研究表明,使用两层 ONIOM B3LYP/6-31++G(d,p)方法,亚型 B/C-SA HIV-1 PR 的催化机制遵循一步协同非循环水解反应过程。本工作旨在探索 HIV-1 PR 催化的蛋白水解所提出的机制,并确保我们提出的机制不是单一理论技术的假象。因此,我们提出了一种适合计算非共价配体/底物-酶结合/解离相互作用的势平均力(PMF)的伞状采样方法,为分子识别提供热力学细节。在混合 QM(DFTB)/MM 方法中,通过 PMF 分析计算自由激活能结果。理论结果表明,所提出的机制原则上与实验数据相符。根据我们的观察,我们建议 QM/MM MD 方法可用于合理化针对特定靶标的先导化合物,如 HIV-1 蛋白酶。