首页> 美国卫生研究院文献>Nucleic Acids Research >The ensemble reactions of hydroxyl radical exhibit no specificity for primary or secondary structure of DNA.
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The ensemble reactions of hydroxyl radical exhibit no specificity for primary or secondary structure of DNA.

机译:羟基自由基的整体反应对DNA的一级或二级结构没有特异性。

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摘要

Hydroxyl radical reacts at numerous sites within nucleic acids to form a wide range of derivatives yet the conformational specificity of only one of these processes, direct strand fragmentation, has received much attention to date. Since the deleterious effects of this radical are not likely limited to strand fragmentation in vivo, this report examined the conformational specificity expressed in a more general manner. For this, modification of DNA was induced by the hydroxyl radical generating system of H2O2 and Fe-EDTA. The ensemble rate of oxidation (nucleobase + deoxyribose backbone) was determined from the overall consumption of a series of oligonucleotides that were designed to model random coils and double helixes containing complementary and noncomplementary base pairing. The resulting pseudo-first order rate constants derived from this model system were relatively unaffected by nucleotide sequence or secondary structure and varied from only 0.022 to 0.048 s-1. Consequently, the indiscriminant nature of hydroxyl radical appears to persist beyond strand fragmentation to include nucleobase oxidation as well.
机译:羟自由基在核酸内的许多位点反应形成各种各样的衍生物,但迄今为止,仅这些过程之一的构象特异性,即直接链断裂,已引起广泛关注。由于该自由基的有害作用不太可能局限于体内链断裂,因此本报告研究了以更普遍的方式表达的构象特异性。为此,通过H 2 O 2和Fe-EDTA的羟基自由基产生系统来诱导DNA的修饰。氧化的整体速率(核碱基+脱氧核糖主链)由一系列寡核苷酸的总体消耗确定,该寡核苷酸设计用于模拟包含互补和非互补碱基对的随机螺旋和双螺旋。衍生自该模型系统的结果伪一阶速率常数相对不受核苷酸序列或二级结构的影响,并且仅在0.022到0.048 s-1之间变化。因此,羟基自由基的不加区别的性质似乎持续存在,不仅仅限于链断裂,还包括核碱基的氧化。

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