Organic Chemistry, Department of Chemistry, Faculty of Mathematics, Informatics and Natural Sciences, Universität Hamburg, Martin-Luther-King-Platz 6, D-20146 Hamburg, Germany.
Laboratory of Virology and Chemotherapy, Department of Microbiology and Immunology and Transplantation, Rega Institute for Medical Research, KU Leuven, Herestraat 49, B-3000 Leuven, Belgium.
J Med Chem. 2020 Nov 25;63(22):13745-13761. doi: 10.1021/acs.jmedchem.0c01293. Epub 2020 Nov 13.
The antiviral activity of nucleoside reverse transcriptase inhibitors is often hampered by insufficient phosphorylation. Nucleoside triphosphate analogues are presented, in which the γ-phosphate was covalently modified by a non-bioreversible, lipophilic 4-alkylketobenzyl moiety. Interestingly, primer extension assays using human immunodeficiency virus reverse transcriptase (HIV-RT) and three DNA-polymerases showed a high selectivity of these γ-modified nucleoside triphosphates to act as substrates for HIV-RT, while they proved to be nonsubstrates for DNA-polymerases α, β, and γ. In contrast to d4TTP, the γ-modified d4TTPs showed a high resistance toward dephosphorylation in cell extracts. A series of acyloxybenzyl-prodrugs of these γ-ketobenzyl nucleoside triphosphates was prepared. The aim was the intracellular delivery of a stable γ-modified nucleoside triphosphate to increase the selectivity of such compounds to act in infected versus noninfected cells. Delivery of γ-ketobenzyl-d4TTPs was proven in T-lymphocyte cell extracts. The prodrugs were potent inhibitors of HIV-1/2 in cultures of infected CEM/0 cells and more importantly in thymidine kinase-deficient CD4 T-cells.
核苷逆转录酶抑制剂的抗病毒活性常常受到磷酸化不足的阻碍。本文提出了核苷三磷酸类似物,其中γ-磷酸通过非生物可逆的亲脂性 4-烷基酮苯甲酰基部分共价修饰。有趣的是,用人免疫缺陷病毒逆转录酶(HIV-RT)和三种 DNA 聚合酶进行的引物延伸测定表明,这些 γ-修饰的核苷三磷酸对 HIV-RT 具有很高的选择性,可作为底物,而对 DNA 聚合酶 α、β 和 γ 则证明是非底物。与 d4TTP 相比,γ-修饰的 d4TTP 在细胞提取物中对去磷酸化具有很高的抗性。本文还制备了一系列这些 γ-酮苯甲酰基核苷三磷酸的酰氧基苯甲基前药。目的是将稳定的 γ-修饰核苷三磷酸递送至细胞内,以增加此类化合物在感染细胞与未感染细胞中发挥作用的选择性。在 T 淋巴细胞细胞提取物中证明了 γ-酮苯甲酰基-d4TTP 的递送。这些前药在感染 CEM/0 细胞的培养物中以及更重要的是在胸苷激酶缺陷型 CD4 T 细胞中是 HIV-1/2 的有效抑制剂。