Didierjean Joël, Isel Catherine, Querré Flore, Mouscadet Jean-François, Aubertin Anne-Marie, Valnot Jean-Yves, Piettre Serge R, Marquet Roland
Unité Propre de Recherche 9002 du CNRS conventionnée à l'Université Louis Pasteur, IBMC, 15 rue René Descartes, 67084 Strasbourg cedex, France.
Antimicrob Agents Chemother. 2005 Dec;49(12):4884-94. doi: 10.1128/AAC.49.12.4884-4894.2005.
Human immunodeficiency virus type I reverse transcriptase (RT) possesses distinct DNA polymerase and RNase H sites, whereas integrase (IN) uses the same active site to perform 3'-end processing and strand transfer of the proviral DNA. These four enzymatic activities are essential for viral replication and require metal ions. Two Mg2+ ions are present in the RT polymerase site, and one or two Mg2+ ions are required for the catalytic activities of RNase H and IN. We tested the possibility of inhibition of the RT polymerase and RNase H as well as the IN 3'-end processing and transfer activities of purified enzymes by a series of 3,7-dihydroxytropolones designed to target two Mg2+ ions separated by approximately 3.7 angstroms. The RT polymerase and IN 3' processing and strand transfer activities were inhibited at submicromolar concentrations, while the RNase H activity was inhibited in the low micromolar range. In all cases, the lack of inhibition by tropolones and O-methylated 3,7-dihydroxytropolones was consistent with the active molecules binding the metal ions in the active site. In addition, inhibition of the DNA polymerase activity was shown to depend on the Mg2+ concentration. Furthermore, selective inhibitors were identified for several of the activities tested, leaving some potential for design of improved inhibitors. However, all tested compounds exhibited cellular toxicity that presently limits their applications.
I型人类免疫缺陷病毒逆转录酶(RT)具有不同的DNA聚合酶和核糖核酸酶H位点,而整合酶(IN)使用相同的活性位点来进行前病毒DNA的3'末端加工和链转移。这四种酶活性对于病毒复制至关重要,并且需要金属离子。RT聚合酶位点存在两个Mg2+离子,核糖核酸酶H和IN的催化活性需要一个或两个Mg2+离子。我们测试了一系列设计用于靶向相隔约3.7埃的两个Mg2+离子的3,7-二羟基托酚酮抑制纯化酶的RT聚合酶和核糖核酸酶H以及IN的3'末端加工和转移活性的可能性。RT聚合酶以及IN的3'加工和链转移活性在亚微摩尔浓度下受到抑制,而核糖核酸酶H活性在低微摩尔范围内受到抑制。在所有情况下,托酚酮和O-甲基化3,7-二羟基托酚酮缺乏抑制作用与活性分子结合活性位点中的金属离子一致。此外,DNA聚合酶活性的抑制显示取决于Mg2+浓度。此外,针对所测试的几种活性鉴定出了选择性抑制剂,这为设计改进的抑制剂留下了一些可能性。然而,所有测试化合物都表现出细胞毒性,目前限制了它们的应用。