Design, discovery, modelling, synthesis, and biological evaluation of novel and small, low toxicity s-triazine derivatives as HIV-1 non-nucleoside reverse transcriptase inhibitors

被引:31
|
作者
Viira, Birgit [1 ]
Selyutina, Anastasia [2 ]
Garcia-Sosa, Alfonso T. [1 ]
Karonen, Maarit [3 ]
Sinkkonen, Jari [3 ]
Merits, Andres [2 ]
Maran, Uko [1 ]
机构
[1] Univ Tartu, Inst Chem, EE-50411 Tartu, Estonia
[2] Univ Tartu, Inst Technol, EE-50411 Tartu, Estonia
[3] Univ Turku, Dept Chem, FI-20014 Turku, Finland
关键词
HIV; Non-nucleoside reverse transcriptase inhibitors; Synthesis; Antiviral activity; Molecular docking; IMMUNODEFICIENCY-VIRUS TYPE-1; WILD-TYPE; POSITIONAL ADAPTABILITY; LIGAND EFFICIENCY; POTENT; IDENTIFICATION; DOCKING; BINDING; DRUGS; SPECIFICITY;
D O I
10.1016/j.bmc.2016.04.018
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A set of top-ranked compounds from a multi-objective in silico screen was experimentally tested for toxicity and the ability to inhibit the activity of HIV-1 reverse transcriptase (RT) in cell-free assay and in cell-based assay using HIV-1 based virus-like particles. Detailed analysis of a commercial sample that indicated specific inhibition of HIV-1 reverse transcription revealed that a minor component that was structurally similar to that of the main compound was responsible for the strongest inhibition. As a result, novel s-triazine derivatives were proposed, modelled, discovered, and synthesised, and their antiviral activity and cellular toxicity were tested. Compounds 18a and 18b were found to be efficient HIV-1 RT inhibitors, with an IC50 of 5.6 +/- 1.1 mu M and 0.16 +/- 0.05 mu M in a cell-based assay using infectious HIV-1, respectively. Compound 18b also had no detectable toxicity for different human cell lines. Their binding mode and interactions with the RT suggest that there was strong and adaptable binding in a tight (NNRTI) hydrophobic pocket. In summary, this iterative study produced structural clues and led to a group of non-toxic, novel compounds to inhibit HIV-RT with up to nanomolar potency. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:2519 / 2529
页数:11
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