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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Hole transfer in DNA and photosensitized DNA damage: Importance of adenine oxidation
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Hole transfer in DNA and photosensitized DNA damage: Importance of adenine oxidation

机译:DNA中的空穴转移和光敏性DNA损伤:腺嘌呤氧化的重要性

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Photosensitized DNA damage reactions were investigated for two well-known DNA-damaging photosensitizers (Sens), naphthalimide (NI) and napthaldiimide (NDI), which have similar photophysical properties but differ in their redox properties. NI and NDI derivatives (NIN, NDIN), which have cationic side chains and electrostatically binding to DNA due to favorable electrostatic interactions between the negatively charged phosphate groups of DNA and cationic groups, and NIP and NDIP, which possess phosphate groups and do not bind to DNA, were synthesized. NIN and NDIN can oxidize A and G via their singlet excited state, and NDIP oxidizes A and G via its triplet excited state, whereas NIP oxidizes only G. A combination of laser flash photolysis kinetic studies and quantitative HPLC analyses of photosensitized DNA damage was performed for several DNA sequences in the presence of Sens. NIN, NDIN, and NDIP, which oxidizes A, caused significant DNA damage upon photoirradiation, and DNA damage yield increased with the length of the consecutive A stretch. In contrast, NIP, which oxidizes only G, caused only moderate damage to DNA and showed no preference for the consecutive A sequences. These results clearly demonstrate the importance of A-oxidation, especially in consecutive A sequences, which triggers the rapid hole transfer between A's.
机译:研究了两种众所周知的破坏DNA的光敏剂(Sens),萘二甲酰亚胺(NI)和萘甲二酰亚胺(NDI)的光敏DNA损伤反应,它们的光物理性质相似,但其氧化还原性质不同。 NI和NDI衍生物(NIN,NDIN),具有阳离子侧链并由于DNA的带负电荷的磷酸基团与阳离子基团之间的良好静电相互作用而与DNA静电结合,而NIP和NDIP具有磷酸基团且不结合脱氧核糖核酸,被合成了。 NIN和NDIN可以通过单重激发态氧化A和G,而NDIP可以通过三重激发态氧化A和G,而NIP仅氧化G。结合了激光闪光光解动力学研究和光敏DNA损伤的定量HPLC分析在Sens。NIN,NDIN和NDIP的存在下,多个DNA序列会氧化A,在照射光后对DNA造成明显的DNA损伤,并且DNA损伤的产量随连续A序列的长度而增加。相反,仅氧化G的NIP仅对DNA造成中等程度的损害,并且对连续的A序列没有偏爱。这些结果清楚地证明了A-氧化的重要性,尤其是在连续的A序列中,这触发了A之间的快速空穴转移。

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