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DNA的长程和短程氧化损伤:乙锭-DNA组装体中鸟嘌呤的光致损伤。

Long-range and short-range oxidative damage to DNA: photoinduced damage to guanines in ethidium-DNA assemblies.

作者信息

Hall D B, Kelley S O, Barton J K

机构信息

Department of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena 91125, USA.

出版信息

Biochemistry. 1998 Nov 10;37(45):15933-40. doi: 10.1021/bi981750c.

Abstract

Short-range and long-range photoreactions between ethidium and DNA have been characterized. While no DNA reaction is observed upon excitation into the visible absorption band of ethidium, higher-energy irradiation (313-340 nm) leads both to direct strand cleavage at the 5'-G of 5'-GG-3' doublets and to piperidine-sensitive lesions at guanine. This reactivity is not consistent with oxidation of guanine by either electron transfer or singlet oxygen as shown by comparison with reactions of a rhodium intercalator and methylene blue, respectively. By covalently tethering ethidium to one end of a DNA duplex, we demonstrate the presence of two distinct reactions, one short-range and the other long-range. The short-range reaction involves a covalent modification of guanine by ethidium, based upon HPLC analysis of the nucleoside products and studies with ethidium derivatives. The long-range reaction is entirely consistent with oxidation of guanine by DNA-mediated electron transfer. The yield of this electron-transfer reaction is not attenuated with distance; equal yields of guanine damage are observed at a proximal (17 A Et-GG separation) and distal (44 A Et-GG separation) site. These results are quite similar to those previously observed with a covalently tethered rhodium photooxidant and underscore the unique ability of the DNA base stack to facilitate long-range electron transfer so as to effect oxidative damage from a distance.

摘要

已对溴化乙锭与DNA之间的短程和长程光反应进行了表征。当激发进入溴化乙锭的可见吸收带时,未观察到DNA反应,但更高能量的照射(313 - 340 nm)会导致在5'-GG-3'双峰的5'-G处直接链断裂以及鸟嘌呤处出现对哌啶敏感的损伤。通过分别与铑嵌入剂和亚甲蓝的反应比较表明,这种反应性与通过电子转移或单线态氧对鸟嘌呤的氧化不一致。通过将溴化乙锭共价连接到DNA双链体的一端,我们证明存在两种不同的反应,一种是短程反应,另一种是长程反应。基于核苷产物的HPLC分析以及对溴化乙锭衍生物的研究,短程反应涉及溴化乙锭对鸟嘌呤的共价修饰。长程反应与DNA介导的电子转移对鸟嘌呤的氧化完全一致。这种电子转移反应的产率不会随距离而衰减;在近端(Et - GG间距为17 Å)和远端(Et - GG间距为44 Å)位点观察到相等的鸟嘌呤损伤产率。这些结果与先前使用共价连接的铑光氧化剂观察到的结果非常相似,并强调了DNA碱基堆积促进长程电子转移从而远距离造成氧化损伤的独特能力。

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