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首页> 外文期刊>JBIC Journal of Biological Inorganic Chemistry >Long-range charge transport through double-stranded DNA mediated by manganese or iron porphyrins
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Long-range charge transport through double-stranded DNA mediated by manganese or iron porphyrins

机译:通过锰或铁卟啉介导的双链DNA进行长距离电荷传输

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Guanine oxidation by electron transfer results in the formation of a guanine radical cation, which is at the origin of long-range charge transport through double-stranded DNA. It is possible to observe guanine lesions at a long distance from the oxidative reagent covalently bound to DNA owing to the migration of the positive hole in the DNA π-stacks. This phenomenon of long-range hole transport is classically studied in the literature with photosensitizers used as one-electron oxidants. It is shown in the present work that the process of long-range charge transport and the concomitant formation of guanine lesions at a long distance can be observed also in the case of two-electron oxidants. This is the signature of the formation of a transient guanine radical cation in the course of the two-electron abstraction process and consequently evidence of the separated one plus one electron abstraction steps. Long-range charge transport is likely to be a universal mechanism for any two-electron oxidant acting by electron abstraction provided that the second electron abstraction is slower than hole transfer.
机译:通过电子转移的鸟嘌呤氧化导致鸟嘌呤自由基阳离子的形成,这是通过双链DNA进行长距离电荷迁移的起点。由于DNAπ-堆栈中正孔的迁移,可以在距与DNA共价结合的氧化剂很远的距离处观察鸟嘌呤的损伤。在文献中经典地使用光敏剂作为单电子氧化剂研究了这种长距离空穴传输的现象。在目前的工作中表明,在二电子氧化剂的情况下,也可以观察到长距离电荷迁移的过程以及伴随鸟嘌呤损伤的长距离形成。这是在两电子提取过程中形成鸟嘌呤自由基瞬态阳离子的标志,因此证明了一个一电子分离步骤的分离。远程电荷传输可能是任何通过电子抽象作用的两电子氧化剂的普遍机制,条件是第二电子抽象比空穴传输要慢。

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