Scientific and Technological Centre of Organic and Pharmaceutical Chemistry, Institute of Fine Organic Chemistry, National Academy of Sciences of RA, Azatutyan Avenue 26, 0014, Yerevan, Republic of Armenia.
Department of Medical Biochemistry and Biotechnology, Institute of Biomedicine and Pharmacy, Russian-Armenian Niversity, Hovsep Emin Street 123, 0051, Yerevan, Republic of Armenia.
Mol Divers. 2021 Nov;25(4):2045-2052. doi: 10.1007/s11030-020-10095-1. Epub 2020 May 5.
A series of thirty-one new compounds were synthesized and evaluated for their anti-HIV-1 and cytotoxicity activity. Of these, twelve were found to be inhibitors of HIV replications in primary human lymphocytes with median effective concentration (EC) values < 20 µM. However, most of the compounds demonstrated cytotoxicity in different cells. Our structure activity relationship study identified different patterns. In the series of 2-aryl pyrrolidines, comparing the activity of the compounds containing 2-aryl substituents we observed that compounds 1c, 1f-j, 2f,g with benzyloxyphenyl and isopropoxy groups were more potent. Compounds 1g-j, 2f,g, in which the 1-aryl moiety contained a methyl group in 3,5- or 4-positions also showed high activity. In the series of compounds containing the amide, aminomethyl and nitrile groups we observed an increase in activity with C(O)NH < CHNH < CN. In the series of 2-pyrimidinyl pyrrolidines, the best results were demonstrated with derivatives 5e and 5f, in which the presence of a benzyl fragment in 1st and aniline fragment in 6th positions of pyrimidine ring we observed an increase in anti-HIV activity. Molecular docking studies of synthesized compounds with HIV-1 reverse transcriptase enzyme were performed. Binding energies of ligands were estimated, and the interacting amino acids of HIV-1 reverse transcriptase protein were shown. Based on corroborative results of the molecular docking studies and in vitro experiments, we suggest that three groups of synthesized ligands (1c, 1f-i), (2f,g), (5e,f, 7) are of high interest for further research on new drugs against HIV. General structure of synthesized 2-aryl and 2-pyrimidinyl pyrrolidines.
合成了一系列 31 种新化合物,并评估了它们抗 HIV-1 和细胞毒性的活性。其中 12 种化合物在原代人淋巴细胞中对 HIV 复制具有抑制作用,半数有效浓度(EC)值<20μM。然而,大多数化合物在不同的细胞中表现出细胞毒性。我们的构效关系研究确定了不同的模式。在 2-芳基吡咯烷系列中,比较含有 2-芳基取代基的化合物的活性,我们观察到含有苄氧基苯基和异丙氧基的化合物 1c、1f-j、2f、g 更有效。含有 3、5-或 4-位甲基的 1-芳基部分的化合物 1g-j、2f、g 也表现出高活性。在含有酰胺、氨甲基和腈基的化合物系列中,我们观察到 C(O)NH<CHNH<CN 的活性增加。在含有 2-嘧啶基吡咯烷的化合物系列中,衍生物 5e 和 5f 表现出最佳的结果,其中嘧啶环的 1 位存在苄基片段,6 位存在苯胺片段,我们观察到抗 HIV 活性增加。对合成化合物与 HIV-1 逆转录酶的分子对接研究进行了研究。估计了配体的结合能,并显示了 HIV-1 逆转录酶蛋白的相互作用氨基酸。基于分子对接研究和体外实验的综合结果,我们建议三组合成配体(1c、1f-i)、(2f、g)、(5e、f、7)对进一步研究抗 HIV 的新药具有很高的兴趣。合成的 2-芳基和 2-嘧啶基吡咯烷的一般结构。