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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Orbital based electronic structural signatures of the guanine keto G-7H/G-9H tautomer pair as studied using dual space analysis
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Orbital based electronic structural signatures of the guanine keto G-7H/G-9H tautomer pair as studied using dual space analysis

机译:使用双重空间分析研究的鸟嘌呤酮G-7H / G-9H互变异构体对的基于轨道的电子结构特征

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Electronic structural signatures of the guanine-7H and guanine-9H tautomers have been investigated on an orbital by orbital basis using dual space analysis. A combination of density functional theory (B3LYP/TZVP), the statistical average of model orbital potentials (SAOP/TZ2P) method and outer valence Green's function theory (OVGF/TZVP) has been used to generate optimal tautomer geometries and accurate ionization energy spectra for the guanine tautomer pair. The present work found that the non-planar form for both of the guanine keto pair possesses lower energies than their corresponding planar counterparts, and that the canonical form of the guanine-7H tautomer has slightly lower total energy than guanine-9H. This latter result is in agreement with previous experimental and theoretical findings. In the planar guanine pair the geometric parameters and anisotropic molecular properties are compared, focusing on changes caused by the mobile proton transfer. It is demonstrated that the mobile proton only causes limited disturbance to isotropic properties, such as geometry and the energetics, of the guanine keto tautomer pair. The exception to this general statement is for related local changes such as the N-(7)-C-(g) and C-(8)-N-(9) bond length resonance between the single and double bonds, reflecting the nitrogen atom being bonded with the mobile proton in the tautomers. The mobile proton distorts the electron distribution of the tautomers, which leads to significant changes in the molecular anisotropic properties. The dipole moment of guanine-7H is altered by about a factor of three, from 2.23 to 7.05 D (guanine-9H), and the molecular electrostatic potentials also reflect significant electron charge distortion. The outer valence orbital momentum distributions, which were obtained using the plane wave impulse approximation (PWIA), have demonstrated quantitatively that the outer valence orbitals of the tautomer pair can be divided into three groups. That is orbitals 1a ''-7a '' and 18a ', which do not have visible alternations in the tautomeric process (which consist of either pi orbitals or are close to the inner valence shell); a second group comprising orbitals 19a '-22a ', 25a ', 26a ', 28a ', 29a ' and 31a ', which show small perturbations as a result of the mobile hydrogen locations; and group three, orbitals 23a ', 24a ', 27a ', 30a ' and 32a ', which demonstrate significant changes due to the mobile proton transfer and are therefore considered as signature orbitals of the G-7H/G-9H keto tautomeric process. (c) 2006 Elsevier B.V All rights reserved.
机译:鸟嘌呤7H和鸟嘌呤9H互变异构体的电子结构特征已使用双重空间分析逐个轨道进行了研究。结合使用密度泛函理论(B3LYP / TZVP),模型轨道势的统计平均值(SAOP / TZ2P)方法和外价格林函数理论(OVGF / TZVP),可生成最佳互变异构体几何结构和精确的电离能谱鸟嘌呤互变异构体对。目前的工作发现,两个鸟嘌呤酮对的非平面形式的能量均低于其相应的平面对应物,而鸟嘌呤7H互变异构体的规范形式的总能量比鸟嘌呤9H略低。后一结果与先前的实验和理论发现相符。在平面鸟嘌呤对中,比较了几何参数和各向异性分子特性,重点是由移动质子转移引起的变化。已证明,移动质子仅对鸟嘌呤酮互变异构体对的各向同性性质(例如几何形状和能量学)产生有限的干扰。该一般说明的例外情况是相关的局部变化,例如单键和双键之间的N-(7)-C-(g)和C-(8)-N-(9)键长共振,反映了氮原子与互变异构体中的移动质子键合。流动质子扭曲了互变异构体的电子分布,这导致分子各向异性性质发生了显着变化。鸟嘌呤7H的偶极矩改变了大约三倍,从2.23到7.05 D(鸟嘌呤9H),分子静电势也反映出显着的电子电荷畸变。使用平面波脉冲近似(PWIA)获得的外价轨道动量分布已定量证明互变异构体对的外价轨道可分为三类。那就是轨道1a''-7a''和18a',在互变异构过程中没有明显的交替(由pi轨道组成或靠近内价壳);第二组包括轨道19a'-22a',25a',26a',28a',29a'和31a',这些轨道由于氢的移动位置而表现出较小的扰动;第三组轨道23a',24a',27a',30a'和32a'由于移动质子转移而表现出显着变化,因此被认为是G-7H / G-9H酮互变异构过程的标志性轨道。 (c)2006 Elsevier B.V保留所有权利。

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