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Molecular Modeling Approach to Understanding the Mode of Action of l-Nucleosides as Antiviral Agents

机译:分子建模方法以了解l-核苷作为抗病毒药的作用方式

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摘要

A series of unnatural l-nucleosides such as 3TC, FTC and l-FMAU have been found to be potent antiviral agents. The mode of action of l-nucleosides has been found to be similar to that of d-nucleosides as antiviral agents, despite their unnatural stereochemistry, that is, nucleotide formation by kinases followed by interaction with the reverse transcriptase (RT) of HIV or DNA polymerase. To date, the mode of action of nucleoside inhibitors at the molecular level with respect to the active conformations of the 5′-triphosphates as well as the interaction with the RT is not known. Recently, the X-ray crystal structure of the RT-DNA-dTTP catalytic complex has been reported. Computer modeling has been performed for several pairs of d- and l-nucleoside inhibitors using the HIV-1 RT model and crystal coordinate data from a subset of the protein surrounding the deoxynucleoside triphosphate (dNTP) binding pocket region. Results from our modeling studies of d-/l-zidovudine, d-/l-3TC, d-/l-dideoxycytosine triphosphates, dTTP and dCTP show that their binding energies correlate with the reported 50% effective concentrations. Modeling results are also discussed with respect to favorable conformations of each inhibitor at the dNTP site in the polymerization process. Additionally, the clinically important M184V mutation, which confers resistance against 3TC and FTC, was studied with our modeling system. The binding energy patterns of nucleoside inhibitors at the M184V mutation site correlate with the reported antiviral data.
机译:已经发现一系列非天然的1-核苷,例如3TC,FTC和1-FMAU是有效的抗病毒剂。尽管它们的立体化学是非自然的,即激酶形成核苷酸,然后与HIV或DNA的逆转录酶(RT)相互作用,但已发现l-核苷的作用方式与作为抗病毒剂的d-核苷相似。聚合酶。迄今为止,关于5'-三磷酸的活性构象以及与RT的相互作用,在分子水平上核苷抑制剂的作用方式尚不清楚。最近,已经报道了RT-DNA-dTTP催化复合物的X射线晶体结构。使用HIV-1 RT模型和围绕三磷酸脱氧核苷(dNTP)结合口袋区域的一部分蛋白质的晶体坐标数据,已经对几对d-和l-核苷抑制剂进行了计算机建模。我们对d- / l-zidovudine,d- / l-3TC,d- / l-二脱氧胞嘧啶三磷酸,dTTP和dCTP的建模研究结果表明,它们的结合能与报道的50%有效浓度相关。还讨论了关于聚合过程中dNTP位点上每种抑制剂的有利构象的建模结果。此外,使用我们的建模系统研究了具有重要临床意义的M184V突变,该突变赋予了对3TC和FTC的抗性。 M184V突变位点的核苷抑制剂的结合能模式与报道的抗病毒数据相关。

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