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DNA双链/四链体共轭物中的电荷传输。

Charge transport in DNA duplex/quadruplex conjugates.

作者信息

Delaney Sarah, Barton Jacqueline K

机构信息

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

出版信息

Biochemistry. 2003 Dec 9;42(48):14159-65. doi: 10.1021/bi0351965.

Abstract

DNA conjugates containing adjacent duplex and guanine quadruplex assemblies have been designed to explore charge transport into quadruplex architectures. The quadruplex assemblies have been characterized structurally using circular dichroism and by assaying for chemical protection. Using an intercalating rhodium photooxidant, noncovalently bound or tethered to the duplex end, oxidizing radicals are found to be trapped in the folded quadruplex. Damage is observed almost exclusively at the external tetrads of the quadruplex. Little damage of the center tetrad is observed, due most likely to lowered efficiency of radical trapping within the quadruplex core. This pattern of damage is distinct from that observed for repetitive G sequences within duplex DNA. The data indicate, furthermore, that in the conjugates examined, the guanine quadruplex provides a more effective trap than a 5'-GG-3' guanine doublet within duplex DNA. Within these assemblies, sufficient base-base overlap must exist at the duplex/quadruplex junction to allow for charge migration. This funneling of damage to the quadruplex, as well as the unique pattern of damage within the quadruplex, requires consideration with respect to the analysis of oxidative DNA damage within the cell.

摘要

含有相邻双链体和鸟嘌呤四链体组件的DNA缀合物已被设计用于探索电荷向四链体结构的传输。已使用圆二色性并通过化学保护测定对四链体组件进行了结构表征。使用嵌入的铑光氧化剂,其非共价结合或连接到双链体末端,发现氧化自由基被困在折叠的四链体中。几乎仅在四链体的外部四分体处观察到损伤。中心四分体几乎没有损伤,这很可能是由于四链体核心内自由基捕获效率降低所致。这种损伤模式与双链DNA中重复G序列所观察到的不同。此外,数据表明,在所研究的缀合物中,鸟嘌呤四链体比双链DNA中的5'-GG-3'鸟嘌呤二联体提供了更有效的捕获。在这些组件中,双链体/四链体连接处必须存在足够的碱基-碱基重叠以允许电荷迁移。这种对四链体的损伤集中以及四链体内独特的损伤模式,在分析细胞内氧化性DNA损伤时需要加以考虑。

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