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双链DNA中的长距离自由基阳离子迁移:相邻A·A和T·T错配对效率和机制的影响

Long-distance radical cation migration in duplex DNA: the effect of contiguous A.A and T.T mismatches on efficiency and mechanism.

作者信息

Schlientz Nathan W, Schuster Gary B

机构信息

School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia 30332, USA.

出版信息

J Am Chem Soc. 2003 Dec 24;125(51):15732-3. doi: 10.1021/ja0382359.

Abstract

A series of DNA oligomers was prepared. Each oligomer contained an anthraquinone group (AQ, sensitizer) covalently linked at a 5'-end and two GG steps that surrounded a variable region. The variable region was composed of A.T base pairs or A.A or T.T mismatches. Irradiation of the AQ injected a radical cation (hole) into the DNA that migrated through the duplex, being trapped by reaction with H2O of O2 at the GG steps. The effect of substituting A.A or T.T mismatches for Watson-Crick base pairs was examined. For A.A mispairs, charge transfer through the mismatch region was as efficient as through normal DNA. For the T.T mismatches, radical cation transport was strongly distance-dependent. These findings suggest that A.A mismatches form a zipper-like motif, and charge transport proceeds by a hopping mechanism. In contrast, charge transport through the T.T mismatches (where there are no purines) may proceed by quantum mechanical tunneling.

摘要

制备了一系列DNA寡聚物。每个寡聚物在5'-末端共价连接一个蒽醌基团(AQ,敏化剂),并包含两个围绕可变区的GG步。可变区由A.T碱基对或A.A或T.T错配组成。照射AQ会向DNA中注入一个自由基阳离子(空穴),该空穴通过双链迁移,在GG步与O2的H2O反应而被捕获。研究了用A.A或T.T错配取代沃森-克里克碱基对的效果。对于A.A错配,通过错配区域的电荷转移与通过正常DNA的效率相同。对于T.T错配,自由基阳离子传输强烈依赖于距离。这些发现表明,A.A错配形成拉链状基序,电荷传输通过跳跃机制进行。相比之下,通过T.T错配(其中没有嘌呤)的电荷传输可能通过量子力学隧穿进行。

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