Centro de Biología Molecular "Severo Ochoa" (Consejo Superior de Investigaciones Científicas and Universidad Autónoma de Madrid), c/ Nicolás Cabrera 1, Campus de Cantoblanco-UAM, 28049 Madrid, Spain.
Department of Medicinal Chemistry, Key Laboratory of Chemical Biology, Ministry of Education, School of Pharmaceutical Sciences, Cheeloo College of Medicine, Shandong University, Jinan 250012, PR China.
J Mol Biol. 2022 Apr 15;434(7):167507. doi: 10.1016/j.jmb.2022.167507. Epub 2022 Feb 22.
In retroviruses, strand displacement DNA-dependent DNA polymerization catalyzed by the viral reverse transcriptase (RT) is required to synthesize double-stranded proviral DNA. In addition, strand displacement during RNA-dependent DNA synthesis is critical to generate high-quality cDNA for use in molecular biology and biotechnology. In this work, we show that the loss of RNase H activity due to inactivating mutations in HIV-1 RT (e.g. D443N or E478Q) has no significant effect on strand displacement while copying DNA templates, but has a large impact on DNA polymerization in reactions carried out with RNA templates. Similar effects were observed with β-thujaplicinol and other RNase H active site inhibitors, including compounds with dual activity (i.e., characterized also as inhibitors of HIV-1 integrase and/or the RT DNA polymerase). Among them, dual inhibitors of HIV-1 RT DNA polymerase/RNase H activities, containing a 7-hydroxy-6-nitro-2H-chromen-2-one pharmacophore were found to be very potent and effective strand displacement inhibitors in RNA-dependent DNA polymerization reactions. These findings might be helpful in the development of transcriptomics technologies to obtain more uniform read coverages when copying long RNAs and for the construction of more representative libraries avoiding biases towards 5' and 3' ends, while providing valuable information for the development of novel antiretroviral agents.
在逆转录病毒中,病毒逆转录酶 (RT) 催化的链置换 DNA 依赖性 DNA 聚合对于合成双链前病毒 DNA 是必需的。此外,在 RNA 依赖性 DNA 合成过程中的链置换对于生成用于分子生物学和生物技术的高质量 cDNA 至关重要。在这项工作中,我们表明,由于 HIV-1 RT 中的失活突变(例如 D443N 或 E478Q)导致 RNase H 活性丧失对复制 DNA 模板时的链置换没有显著影响,但对用 RNA 模板进行的 DNA 聚合反应有很大影响。β-雪松醇和其他 RNase H 活性位点抑制剂也观察到类似的影响,包括具有双重活性的化合物(即,也被表征为 HIV-1 整合酶和/或 RT DNA 聚合酶抑制剂)。其中,包含 7-羟基-6-硝基-2H-色烯-2-酮药效团的 HIV-1 RT DNA 聚合酶/RNase H 双重抑制剂在 RNA 依赖性 DNA 聚合反应中被发现是非常有效的链置换抑制剂。这些发现可能有助于开发转录组学技术,在复制长 RNA 时获得更均匀的读取覆盖率,并构建更具代表性的文库,避免偏向 5' 和 3' 端,同时为开发新型抗逆转录病毒药物提供有价值的信息。