首页> 美国卫生研究院文献>Nucleic Acids Research >Substrate mimicry: HIV-1 reverse transcriptase recognizes 6-modified-3′-azido-2′3′-dideoxyguanosine-5′-triphosphates as adenosine analogs
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Substrate mimicry: HIV-1 reverse transcriptase recognizes 6-modified-3′-azido-2′3′-dideoxyguanosine-5′-triphosphates as adenosine analogs

机译:底物模拟:HIV-1逆转录酶将6-修饰的3-叠氮基23-二脱氧鸟苷5-三磷酸识别为腺苷类似物

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摘要

β-D-3′-Azido-2′,3′-dideoxyguanosine (3′-azido-ddG) is a potent inhibitor of HIV-1 replication with a superior resistance profile to zidovudine. Recently, we identified five novel 6-modified-3′-azido-ddG analogs that exhibit similar or superior anti-HIV-1 activity compared to 3′-azido-ddG in primary cells. To gain insight into their structure–activity–resistance relationships, we synthesized their triphosphate (TP) forms and assessed their ability to inhibit HIV-1 reverse transcriptase (RT). Steady-state and pre-steady-state kinetic experiments show that the 6-modified-3′-azido-ddGTP analogs act as adenosine rather than guanosine mimetics in DNA synthesis reactions. The order of potency of the TP analogs against wild-type RT was: 3′-azido-2,6-diaminopurine >3′-azido-6-chloropurine; 3′-azido-6-N-allylaminopurine > 2-amino-6-N,N-dimethylaminopurine; 2-amino-6-methoxypurine. Molecular modeling studies reveal unique hydrogen-bonding interactions between the nucleotide analogs and the template thymine base in the active site of RT. Surprisingly, the structure–activity relationship of the analogs differed in HIV-1 RT ATP-mediated excision assays of their monophosphate forms, suggesting that it may be possible to rationally design a modified base analog that is efficiently incorporated by RT but serves as a poor substrate for ATP-mediated excision reactions. Overall, these studies identify a promising strategy to design novel nucleoside analogs that exert profound antiviral activity against both WT and drug-resistant HIV-1.
机译:β-D-3'-Azido-2',3'-二脱氧鸟苷(3'-azido-ddG)是有效的HIV-1复制抑制剂,对齐多夫定的耐药性更高。最近,我们鉴定了五个新颖的6-修饰的3'-叠氮基-ddG类似物,与原代细胞中的3'-叠氮基-ddG相比,它们具有相似或更高的抗HIV-1活性。为了深入了解它们的结构-活性-抗性关系,我们合成了它们的三磷酸酯(TP)形式并评估了它们抑制HIV-1逆转录酶(RT)的能力。稳态和稳态前的动力学实验表明,6-修饰的3'-叠氮基-ddGTP类似物在DNA合成反应中充当腺苷而不是鸟苷类似物。 TP类似物对野生型RT的效力顺序为:3'-叠氮基-2,6-二氨基嘌呤> 3'-叠氮基-6-氯嘌呤; 3′-叠氮基-6-N-烯丙基氨基嘌呤> 2-氨基-6-N,N-二甲基氨基嘌呤; 2-氨基-6-甲氧基嘌呤。分子建模研究揭示了核苷酸类似物与模板胸腺嘧啶碱基在RT活性位点之间的独特氢键相互作用。出乎意料的是,类似物的结构-活性关系在HIV-1 RT ATP介导的单磷酸盐形式的切除分析中有所不同,这表明可能有可能合理设计一种可以被RT有效结合但质量较差的修饰碱基类似物ATP介导的切除反应的底物。总体而言,这些研究确定了设计新颖的核苷类似物的有前途的策略,这些类似物对WT和耐药HIV-1均具有深远的抗病毒活性。

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