Institute of Biomedical Chemistry, 10 Building 8, Pogodinskaya st., Moscow 119121, Russia.
Molecules. 2018 May 21;23(5):1233. doi: 10.3390/molecules23051233.
Currently, millions of people are living with human immunodeficiency virus type 1 (HIV-1), which causes acquired immunodeficiency syndrome. However, the spread of the HIV-1 resistance to antiviral agents is the major problem in the antiretroviral therapy and medical management of HIV-infected patients. HIV-1 reverse transcriptase (RT) is one of the key viral targets for HIV-1 inhibition. Therefore, the studies on the combatting the HIV resistance that occurs due to the structural changes in RT, are in great demand. This work aims to provide an overview of the state-of-the-art molecular docking approaches applied to the studies of the HIV-1 resistance, associated with RT structure changes. We have reviewed recent studies using molecular docking with mutant forms of RT. The work discusses the modifications of molecular docking, which have been developed to find the novel molecules active against resistance mutants of RT and/or recombinant strains of HIV-1. The perspectives of the existing algorithms of molecular docking to the studies on molecular mechanisms of resistance and selection of the correct binding poses for the reverse transcriptase inhibitors are discussed.
目前,全球有数以百万计的人感染了人类免疫缺陷病毒 1 型(HIV-1),这种病毒会导致获得性免疫缺陷综合征。然而,HIV-1 对抗病毒药物的耐药性传播是抗逆转录病毒治疗和 HIV 感染患者医学管理的主要问题。HIV-1 逆转录酶(RT)是 HIV-1 抑制的关键病毒靶标之一。因此,对抗因 RT 结构变化而产生的 HIV 耐药性的研究需求很大。这项工作旨在概述应用于 HIV-1 耐药性相关 RT 结构变化研究的最先进的分子对接方法。我们已经回顾了使用 RT 突变体进行分子对接的最新研究。本文讨论了分子对接的改进,这些改进是为了寻找针对 RT 耐药突变体和/或 HIV-1 重组株的新型活性分子而开发的。讨论了现有的分子对接算法在耐药性分子机制研究和选择逆转录酶抑制剂正确结合构象方面的应用前景。