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Laser flash photolysis and magnetic-field-effect studies on interaction of thymine and thymidine with menadione: role of sugar in controlling reaction pattern

机译:胸腺嘧啶和胸腺嘧啶核苷与甲萘醌相互作用的激光光解和磁场效应研究:糖在控制反应模式中的作用

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摘要

The magnetic field effect (MFE) in conjunction with laser flash photolysis has been used for the study of the interaction of one of the small drug like quinone molecules, 2-methyl, 1,4-naphthoquinone, commonly known as menadione (MQ), with one of the DNA bases, thymine (THN), and its corresponding nucleoside, thymidine (THDN), in acetonitrile (ACN) and sodium dodecylsulfate (SDS) micelles. It has been observed that THN undergoes electron transfer (ET) and hydrogen (H) abstraction with MQ, while THDN undergoes only H abstraction in both the media. However, our earlier studies showed that a purine base, adenine (ADN), and its nucleoside, 2′-deoxyadenosine (ADS), undergo ET in ACN and H abstraction in SDS. Here we have attempted to explain the differences in the reactions of these DNA bases with MQ. We also reveal the crucial role of a sugar unit in altering the behavior of purine and pyrimidine bases with respect to ET and H abstraction.
机译:磁场效应(MFE)与激光闪光光解结合已用于研究一种小药物,如醌分子2-甲基,1,4-萘醌(通常称为甲萘醌(MQ))的相互作用,在乙腈(ACN)和十二烷基硫酸钠(SDS)胶束中含有一种DNA碱基胸腺嘧啶(THN)及其相应的核苷胸苷(THDN)。已经观察到THN在MQ中经历电子转移(ET)和氢(H)提取,而THDN在两种介质中仅经历H提取。但是,我们较早的研究表明,嘌呤碱基腺嘌呤(ADN)及其核苷2'-脱氧腺苷(ADS)在ACN中经历ET,在SDS中经历H提取。在这里,我们试图解释这些DNA碱基与MQ反应的差异。我们还揭示了糖单元在改变嘌呤和嘧啶碱基相对于ET和H提取的行为中的关键作用。

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