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DNA 中 G 自由基阳离子到 GGG 陷阱的空穴转移速率的距离依赖性。

Distance dependence of hole transfer rates from G radical cations to GGG traps in DNA.

机构信息

Materials Science Department, University of Patras, Rio GR-26504, Greece.

出版信息

Phys Chem Chem Phys. 2013 Oct 7;15(37):15339-46. doi: 10.1039/c3cp51062j.

Abstract

Relative reaction rates for hole transfer between G radical cations and GGG triplets in DNA, through different bridges of varying lengths, are numerically calculated and the obtained results are compared with corresponding experimental observations [Giese et al., 2001, Nature, 412, 318; Angew. Chem., Int. Ed., 1999, 38, 996]. Hole donors and acceptors are separated either by (T-A)n bridges or by N repeated barriers consisting of (T-A,T-A) double base-pairs which are connected through single G-C base-pairs. In the former case, hole transfer rates show a strong exponential decrease with the length of the bridge for short bridges, while a switching to weak distance dependence has been observed for longer bridges. In the latter case, a power law seems to better describe the distance dependence of charge transfer rates. All these experimental observations are qualitatively reproduced by our simulations without any adjustable parameter, considering only tunneling as the charge transfer mechanism. Physical insights into the mechanism providing the switching behavior in the case of (T-A)n bridges are presented through an analysis of the eigenfunctions of the system.

摘要

通过不同长度的桥,数值计算了 G 自由基阳离子和 GGG 三重态之间的空穴转移的相对反应速率,并将得到的结果与相应的实验观察结果进行了比较[Giese 等人,2001 年,《自然》,412,318;Angew. Chem.,Int. Ed.,1999, 38, 996]。空穴供体和受体通过(T-A)n 桥或由重复 N 个由(T-A,T-A)双碱基对组成的屏障隔开,这些碱基对通过单个 G-C 碱基对连接。在前一种情况下,对于短桥,空穴转移速率随桥的长度呈强指数下降,而对于较长的桥,则观察到向弱距离依赖性的转变。在后一种情况下,幂律似乎更好地描述了电荷转移速率的距离依赖性。我们的模拟无需任何可调参数即可定性地再现所有这些实验观察结果,仅考虑隧道作为电荷转移机制。通过分析系统的本征函数,为(T-A)n 桥情况下的切换行为提供了物理见解。

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