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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >A Theoretical Study of Structures and Electron Affinities of Radical Anions of Guanine-Cytosine,Adenine-Thymine,and Hypoxanthine-Cytosine Base Pairs
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A Theoretical Study of Structures and Electron Affinities of Radical Anions of Guanine-Cytosine,Adenine-Thymine,and Hypoxanthine-Cytosine Base Pairs

机译:鸟嘌呤-胞嘧啶,腺嘌呤-胸腺嘧啶和次黄嘌呤-胞嘧啶碱基对的自由基阴离子的结构和电子亲和力的理论研究

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摘要

Adiabatic electron affinities (AEA) and structural perturbations due to addition of an excess electron to each of the neutral guanine-cytosine (G-C),adenine-thymine (A-T),and hypoxanthine-cytosine (HX-C) base pairs were studied using the self-consistent charge,density functional tight-binding (SCC-DFTB-D) method,augmented by the empirical London dispersion energy term.Performance of the SCC-DFTB-D method was examined by comparing the calculated results using it with those obtained from experiment as well as ab initio and other different density functional theoretical studies.An excellent agreement between the SCC-DFTB-D results and those obtained by the other calculations regarding the structural modifications,hydrogen bonding,and dissociation energies of the neutral and radical anion base pairs was found.It is shown that adiabatic electron affinity can be better predicted by considering reaction enthalpies of formation of the respective neutral and anionic base pairs from their respective molecular components instead of taking the difference between their total energies.The calculated AEAs of the base pairs were compared with those obtained by the bracketing method from Schaefer and coworkers,where a satisfactory agreement was found.It shows applicability of the SCC-DFTB-D method to study charged DNA models at a highly economical computational cost.
机译:分别使用中性鸟嘌呤-胞嘧啶(GC),腺嘌呤-胸腺嘧啶(AT)和次黄嘌呤-胞嘧啶(HX-C)碱基对研究了因过量电子而增加的绝热电子亲和力(AEA)和结构扰动。自洽电荷,密度泛函紧密结合(SCC-DFTB-D)方法,以经验伦敦色散能项为基础进行了改进。通过将计算结果与从中获得的结果进行比较,研究了SCC-DFTB-D方法的性能实验以及从头算和其他不同密度泛函理论研究。SCC-DFTB-D结果与通过其他计算获得的结果有关中性和自由基阴离子碱的结构修饰,氢键和离解能极佳的一致性结果表明,通过考虑各自对中性和阴离子性碱基对形成的反应焓,可以更好地预测绝热电子亲和力将计算得出的碱基对的AEA与通过Schaefer和同事的括号法获得的碱基对的AEA进行了比较,发现了令人满意的一致性。它表明SCC-DFTB-的适用性一种以非常经济的计算成本研究带电DNA模型的方法。

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