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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >DFT Investigation of the Interaction of Gold Nanoclusters with Nucleic Acid Base Guanine and the Watson-Crick Guanine-Cytosine Base Pair
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DFT Investigation of the Interaction of Gold Nanoclusters with Nucleic Acid Base Guanine and the Watson-Crick Guanine-Cytosine Base Pair

机译:DFT研究金纳米簇与核酸碱基鸟嘌呤和沃森克里克鸟嘌呤-胞嘧啶碱基对的相互作用

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摘要

The interaction of gold nanoclusters(Au_n,n = 2,4,6,8,10,12)with nucleic acid purine base guanine(G)and the Watson-Crick guanine-cytosine(GC)base pair through the major groove site(N7 site of guanine)of DNA was investigated theoretically.Geometries of complexes were optimized at the density functional theory(DFT)level employing the hybrid B3LYP functional.The 6-31G(d)basis set was used for all atoms except gold,for which the LANL2DZ effective core potential(ECP)was used.Natural population analysis was performed to determine NBO charges.The vertical first ionization potential and electron affinity of guanine and the guanine-cytosine base pair and their complexes with gold nanoclusters were also analyzed.It was revealed that gold clusters interact more strongly with the GC base pair than with isolated guanine.It was found that consequent to the binding of gold nanoclusters a substantial amount of electronic charge was transferred from guanine(or the guanine-cytosine base pair)to the gold clusters.Furthermore,the amount of the electronic charge transferred to the gold cluster was found to be larger for GC-Au_n complexes than that in the G-Au_n complexes.The vertical ionization potential,electron affinity,and biological significance of the interaction of gold nanoclusters with nucleic acid building blocks have also been discussed.
机译:金纳米簇(Au_n,n = 2,4,6,8,10,12)与核酸嘌呤碱基鸟嘌呤(G)和沃森-克里克鸟嘌呤-胞嘧啶(GC)碱基对通过主要凹槽位点的相互作用(从理论上研究了DNA的鸟嘌呤的N7位点。使用杂化B3LYP官能团在密度泛函理论(DFT)层次上优化了配合物的几何构型。除金外,所有原子均使用6-31G(d)基组。使用LANL2DZ有效核心电势(ECP),进行自然种群分析以确定NBO电荷。还分析了鸟嘌呤和鸟嘌呤-胞嘧啶碱基对及其与金纳米簇的配合物的垂直第一电离势和电子亲和力。揭示了金簇与GC碱基对的相互作用比与分离的鸟嘌呤的相互作用更强。发现金纳米簇的结合导致大量电荷从鸟嘌呤(或鸟嘌呤-胞嘧啶碱基对)转移到金此外,发现GC-Au_n配合物比G-Au_n配合物转移到金簇的电子电荷更大。垂直电离势,电子亲和力和金相互作用的生物学意义还讨论了具有核酸构件的纳米簇。

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