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首页> 外文期刊>Chemistry: A European journal >Theoretical Studies on the Mode of Inhibition of Ribonucleotide Reductase by 2'-Substituted Substrate Analogues
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Theoretical Studies on the Mode of Inhibition of Ribonucleotide Reductase by 2'-Substituted Substrate Analogues

机译:2'-取代的底物类似物抑制核糖核苷酸还原酶模式的理论研究

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Several 2'-substituted-2'-de-oxyribonucleotides are potent time-dependent inactivawrtors of the enzyme ribonucleotide reductase (RNR),which function by destructing its essential tyrosil radical and/or by performing covalent addition to the enzyme.The former leads to inhibition of the R2 dimer of RNR and the latter to inhibition of the R1 dimer.Efforts to elucidate the mechanism of inhibition have been undertaken in the last decades,and a general mechanistic scheme has emerged.Accordingly,tweo alternative pathways lead either to the inhibition of R1 or R2,for which the 2'-chloro-2'-deoxynucleotides serve as the model for the inhibition of R1 and the 2'-azido-2'-deoxynucleotides the model for the inhbition of R2.However,the underlying reason for the different behavior of the inhibitors has remained unknown until now.Moreover,a fundamental mechanistic alternative has been proposed,based on results from biomimetic reactions,in which the 2'-substituents would be eliminated as radicals,and not as anions,as previously assumed.This would lead to furtgher reactions not predicted by the existing mechanistic scheme.To gain a better understanding we have performed high-level theoretical calculations on the active site of RNR.Results from this work support the general Stubbe's paradigm,although some changes to that mechanism are necessary.In addition,a rational explanation of the factors that determine which of the dimers (R1 or R2) will be inactivated is provided for the first time.It has been demonstrated also that the 2'-substituents are indeed eliminated as anions,and not as radicals.Bomimetic experiments have led to different results because they lack a basic group capable of deprotonating the 3'-HO group of the substrate.It has been found here that the chemical character of the leaving group (radical or anionic) can be manipulated by controlling the protonation state of the 3'-HO group.
机译:几种2'-取代的2'-脱氧核糖核苷酸是核糖核苷酸还原酶(RNR)的强效时间依赖性灭活剂,它们通过破坏其必需的酪氨酸基团和/或通过对该酶进行共价添加来发挥作用。在过去的几十年中,人们一直在努力阐明抑制作用的机理,并提出了一种通用的机制。因此,两种替代途径都可能导致抑制RNR的R2二聚体,而后者又抑制了R1二聚体。 R1或R2的特征,其中2'-氯2'-脱氧核苷酸充当抑制R1的模型,而2'-叠氮基2'-脱氧核苷酸充当抑制R2的模型。此外,基于仿生反应的结果,提出了一种基本的机械替代方法,其中2'-取代基将被消除为自由基,而n如先前所假设的那样,这将导致阴离子反应。现有的机理方案无法预测进一步的反应。为了更好地理解,我们在RNR的活性部位进行了高级理论计算。这项工作的结果支持了Stubbe博士的观点。范式,尽管有必要对该机制进行一些改变。此外,首次提供了确定哪些二聚体(R1或R2)将被失活的因素的合理解释。还证明了2' -取代基确实作为阴离子而不是作为自由基被消除。仿射实验导致不同的结果,因为它们缺乏能够使底物的3'-HO基团去质子化的碱性基团。在这里发现,该取代基的化学特性离去基团(自由基或阴离子)可通过控制3'-HO基团的质子化状态来操纵。

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