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质子转移在 B 型 DNA 中嵌入的氢化鸟嘌呤-胞嘧啶三聚物中性物种、阳离子和阴离子中。

Proton-transfer in hydrogenated guanine-cytosine trimer neutral species, cations, and anions embedded in B-form DNA.

机构信息

Emei Campus, Southwest Jiaotong University, Emei 614202, P. R. China.

出版信息

Phys Chem Chem Phys. 2014 Apr 14;16(14):6717-25. doi: 10.1039/c3cp54904f. Epub 2014 Mar 3.

Abstract

The neutral DNA trimers with the hydrogen atom added to the C8 site of the middle guanine-cytosine (GC) base pair, the DNA trimers protonated at the N7 site of the middle GC base pair, and the anionic species resulting from hydride addition to the C6 site of the middle GC base pair are investigated using theoretical methods. The canonical Watson-Crick structures (WC), transition state structures (TS) and proton-transferred structures (PT) of each relevant system are optimized in the gas phase and in aqueous solution, in order to understand the processes of proton transfer. The proton transfer reactions of the DNA trimers are compared with the corresponding isolated hydrogenated GC base pairs to explore the influence of the surrounding molecules and the base sequence. The proton transfer reactions of the neutral species, cations, and anions are compared, aiming to clarify the effects of the system's total charge. The results reveal that the surrounding molecules decrease the reaction energies of proton-transfer in aqueous solution. The structures with the dATGCAT and dGCGCGC sequences facilitate proton H4a transfer, but hinder proton H1 transfer. The structures with the dCGGCCG and dTAGCTA sequences facilitate proton H1 transfer. The net charge on the system plays an important role in determining the single and double proton-transfer patterns. Anions are more likely to experience proton-transfer reactions than neutral species and cations, and all the proton-transfer reactions of the anions are exothermic.

摘要

采用理论方法研究了在中间鸟嘌呤-胞嘧啶(GC)碱基对的 C8 位添加氢原子的中性 DNA 三聚体、在中间 GC 碱基对的 N7 位质子化的 DNA 三聚体以及氢原子加在中间 GC 碱基对的 C6 位形成的阴离子物种。为了理解质子转移过程,在气相和水溶液中优化了每个相关体系的典型沃森-克里克结构(WC)、过渡态结构(TS)和质子转移结构(PT)。将 DNA 三聚体的质子转移反应与相应的孤立氢化 GC 碱基对进行比较,以探究周围分子和碱基序列的影响。将中性物种、阳离子和阴离子的质子转移反应进行比较,旨在阐明体系总电荷的影响。结果表明,周围分子降低了水溶液中质子转移的反应能。dATGCAT 和 dGCGCGC 序列的结构有利于质子 H4a 转移,但阻碍质子 H1 转移。dCGGCCG 和 dTAGCTA 序列的结构有利于质子 H1 转移。体系的净电荷在确定单质子和双质子转移模式方面起着重要作用。阴离子比中性物种和阳离子更易发生质子转移反应,并且阴离子的所有质子转移反应都是放热的。

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