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One-electron oxidation reactions of purine and pyrimidine bases in cellular DNA

机译:细胞DNA中嘌呤和嘧啶碱基的单电子氧化反应

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Purpose: The aim of this survey is to critically review the available information on one-electron oxidation reactions of nucleobases in cellular DNA with emphasis on damage induced through the transient generation of purine and pyrimidine radical cations. Since the indirect effect of ionizing radiation mediated by hydroxyl radical is predominant in cells, efforts have been made to selectively ionize bases using suitable one-electron oxidants that consist among others of high intensity UVC laser pulses. Thus, the main oxidation product in cellular DNA was found to be 8-oxo-7,8-dihydroguanine as a result of direct bi-photonic ionization of guanine bases and indirect formation of guanine radical cations through hole transfer reactions from other base radical cations. The formation of 8-oxo-7,8-dihydroguanine and other purine and pyrimidine degradation products was rationalized in terms of the initial generation of related radical cations followed by either hydration or deprotonation reactions in agreement with mechanistic pathways inferred from detailed mechanistic studies. The guanine radical cation has been shown to be implicated in three other nucleophilic additions that give rise to DNA-protein and DNA-DNA cross-links in model systems. Evidence was recently provided for the occurrence of these three reactions in cellular DNA. Conclusion: There is growing evidence that one-electron oxidation reactions of nucleobases whose mechanisms have been characterized in model studies involving aqueous solutions take place in a similar way in cells. It may also be pointed out that the above cross-linked lesions are only produced from the guanine radical cation and may be considered as diagnostic products of the direct effect of ionizing radiation.
机译:目的:本次调查的目的是严格审查细胞DNA中核碱基的单电子氧化反应的可用信息,重点是通过瞬时产生嘌呤和嘧啶自由基阳离子引起的损伤。由于在细胞中主要是由羟基自由基介导的电离辐射的间接作用,因此人们努力使用合适的单电子氧化剂选择性地电离碱基,所述单电子氧化剂包括高强度UVC激光脉冲。因此,由于鸟嘌呤碱基的直接双光子电离和通过其他碱基自由基阳离子的空穴转移反应间接形成鸟嘌呤自由基阳离子,因此发现细胞DNA中的主要氧化产物是8-oxo-7,8-dihydroguanine。 。从相关机理阳离子的初始生成,随后的水合或去质子化反应开始,就可以合理地确定8-氧代-7,8-二氢鸟嘌呤和其他嘌呤和嘧啶降解产物的形成,并与详细机理研究得出的机理相一致。已显示鸟嘌呤自由基阳离子与其他三个亲核添加物有关,在模型系统中它们会引起DNA-蛋白质和DNA-DNA交联。最近提供了在细胞DNA中发生这三个反应的证据。结论:越来越多的证据表明,在涉及水溶液的模型研究中已表征其机理的核碱基的单电子氧化反应在细胞中以类似的方式发生。还可以指出,上述交联的损伤仅由鸟嘌呤自由基阳离子产生,并且可以认为是电离辐射的直接作用的诊断产物。

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