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Effect of condensate formation on long-distance radical cation migration in DNA

机译:冷凝物的形成对DNA中长距离自由基阳离子迁移的影响

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摘要

Long-distance radical cation transport was studied in DNA condensates. Linearized pUC19 plasmid was ligated to an oligomer containing a covalently linked anthraquinone group and six regularly spaced GG steps, which serve as traps for the migrating radical cation. Treatment of the linear, ligated plasmid with spermidine results in formation of condensates that were detected by light scattering and observed by transmission electron microscopy. Irradiation of the anthraquinone group in the condensate causes long-distance charge migration, which is detected by reaction at the remote guanines. The efficiency of charge migration in the condensate is significantly less than it is for the corresponding oligomer in solution. This result is attributed to a lower mobility for the migrating radical cation in the condensate, which is caused by inhibited formation of charge-transfer-effective states.
机译:在DNA缩合物中研究了远距离自由基阳离子迁移。将线性化的pUC19质粒连接至含有共价连接的蒽醌基团和六个规则间隔的GG台阶的低聚物,这些台阶用作迁移自由基阳离子的陷阱。用亚精胺处理线性连接的质粒导致形成冷凝物,该冷凝物通过光散射检测并通过透射电子显微镜观察。冷凝液中蒽醌基团的照射会导致长距离电荷迁移,这可通过远端鸟嘌呤的反应检测到。冷凝物中电荷迁移的效率明显低于溶液中相应低聚物的迁移效率。该结果归因于在冷凝液中迁移的自由基阳离子的较低迁移率,这是由于抑制了电荷转移有效态的形成而引起的。

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