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9-甲基鸟嘌呤-1-甲基胞嘧啶复合物的价态阴离子。计算和光电子能谱研究。

Valence anions of 9-methylguanine-1-methylcytosine complexes. Computational and photoelectron spectroscopy studies.

作者信息

Szyperska Anna, Rak Janusz, Leszczynski Jerzy, Li Xiang, Ko Yeon Jae, Wang Haopeng, Bowen Kit H

机构信息

Department of Chemistry, University of Gdansk, Sobieskiego 18, 80-952 Gdansk, Poland.

出版信息

J Am Chem Soc. 2009 Feb 25;131(7):2663-9. doi: 10.1021/ja808313e.

Abstract

The photoelectron spectrum for the radical anion of 9-methylguanine-1-methylcytosine, MGMC(-), was recorded for the first time. To interpret the experimental results, B3LYP/6-31++G(d,p) level computational studies were carried out for the neutral and anionic complexes of MGMC/MGMC(-) stabilized by three hydrogen bonds and comprising canonical or low-energy tautomeric forms of the methylated nucleobases. The visualization of singly occupied molecular orbitals for the MGMC(-) anions indicates that they are valence-bound species since the excess electron is localized on a pi* orbital of cytosine. All but one of the studied anionic complexes are adiabatically stable at the applied B3LYP level of theory. The intensity maximum of the broad band in the photoelectron spectrum was measured at 2.1 eV. This value is very well reproduced by the calculated vertical detachment energy of the calculated global minimum geometry of the MGMC(-) anion. This structure is the Watson-Crick base pair anion with proton transferred from the N1 atom of guanine to the N3 site of cytosine. The calculated adiabatic electron affinities span a range of 0.39-0.60 eV. The consequences of electron attachment to the AT or GC base pairs incorporated within DNA are briefly discussed in the context of DNA damage by low-energy electrons.

摘要

首次记录了9-甲基鸟嘌呤-1-甲基胞嘧啶自由基阴离子MGMC(-)的光电子能谱。为了解释实验结果,对通过三个氢键稳定且包含甲基化核碱基的典型或低能互变异构形式的MGMC/MGMC(-)中性和阴离子配合物进行了B3LYP/6-31++G(d,p)水平的计算研究。MGMC(-)阴离子单占据分子轨道的可视化表明它们是价态束缚物种,因为多余的电子定域在胞嘧啶的π*轨道上。在所应用的B3LYP理论水平下,除一种研究的阴离子配合物外,其他所有配合物都是绝热稳定的。光电子能谱中宽带的强度最大值在2.1 eV处测得。通过计算MGMC(-)阴离子全局最小几何结构的垂直脱离能,很好地再现了该值。这种结构是质子从鸟嘌呤的N1原子转移到胞嘧啶的N3位点的沃森-克里克碱基对阴离子。计算得到的绝热电子亲和能范围为0.39 - 0.60 eV。在低能电子对DNA造成损伤的背景下,简要讨论了电子附着于DNA中包含的AT或GC碱基对的后果。

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