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HIV-1 逆转录酶与依非韦伦和/或β-雪松醇类似物复合物的核糖核酸酶 H 切割活性的瞬态动力学分析。

Transient kinetic analyses of the ribonuclease H cleavage activity of HIV-1 reverse transcriptase in complex with efavirenz and/or a β-thujaplicinol analogue.

机构信息

*Division of Infectious Diseases, Department of Medicine, University of Pittsburgh School of Medicine, Pittsburgh, PA 15261, U.S.A.

出版信息

Biochem J. 2013 Oct 15;455(2):179-84. doi: 10.1042/BJ20130850.

DOI:10.1042/BJ20130850
PMID:23927736
Abstract

EFV (efavirenz) and β-thujaplicinol [2,7-dihydroxy-4-1(methylethyl)-2,4,6-cycloheptatrien-1-one] have contrasting effects on the RNase H activity of HIV-1 RT (reverse transcriptase). EFV binds in the non-nucleoside inhibitor-binding pocket and accelerates this activity, whereas β-thujaplicinol binds in the RNase H active site and inhibits it. We have used pre-steady-state kinetic analyses to gain an insight into the mechanism by which EFV and a β-thujaplicinol analogue [19616 (2,7-dihydroxy-2,4,6-cyclo-heptatrien-1-one)] modulate RT RNase H activity. Our data show that EFV and 19616 have no effect on polymerase-dependent RNase H cleavages. However, both compounds significantly affected the rates of polymerase-independent RNase H cleavages. In regard to the latter, we found no evidence that the bound RNA/DNA template/primer substrate restricted 19616 from interacting with RT. In light of these data, we propose a model in which 19616 binds to the RNase H active site of RT after the primary polymerase-dependent RNase H cleavage has occurred and stabilizes the 3'-end of the DNA primer in the polymerase active site thus blocking the enzyme's ability to carry out the polymerase-independent cleavages. By contrast, EFV destabilizes the 3'-end of the DNA primer in the DNA polymerase active site and promotes RT-mediated polymerase-independent cleavages. Consistent with this model, we show antagonism between EFV and 19616.

摘要

EFV(依法韦仑)和 β-雪松醇[2,7-二羟基-4-1(甲基乙基)-2,4,6-环庚三烯-1-酮]对 HIV-1 RT(逆转录酶)的 RNase H 活性有相反的影响。EFV 结合在非核苷抑制剂结合口袋中并加速该活性,而 β-雪松醇结合在 RNase H 活性部位并抑制该活性。我们使用预稳态动力学分析来深入了解 EFV 和 β-雪松醇类似物[19616(2,7-二羟基-2,4,6-环庚三烯-1-酮)]调节 RT RNase H 活性的机制。我们的数据表明 EFV 和 19616 对聚合酶依赖性 RNase H 切割没有影响。然而,这两种化合物都显著影响了聚合酶非依赖性 RNase H 切割的速率。关于后者,我们没有发现证据表明结合的 RNA/DNA 模板/引物底物限制了 19616 与 RT 的相互作用。鉴于这些数据,我们提出了一个模型,其中 19616 在主要的聚合酶依赖性 RNase H 切割发生后结合到 RT 的 RNase H 活性部位,并稳定聚合酶活性部位中的 DNA 引物的 3'-末端,从而阻止酶进行聚合酶非依赖性切割。相比之下,EFV 使 DNA 聚合酶活性部位中的 DNA 引物的 3'-末端不稳定,并促进 RT 介导的聚合酶非依赖性切割。与该模型一致,我们显示 EFV 和 19616 之间存在拮抗作用。

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