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通过QTAIM双泛函分析和量子化学计算阐明了核碱基对之间多氢键中每个氢键的内在动态和静态性质及其行为。

Intrinsic dynamic and static nature of each HB in the multi-HBs between nucleobase pairs and its behavior, elucidated with QTAIM dual functional analysis and QC calculations.

作者信息

Nakanishi Waro, Hayashi Satoko, Nishide Taro

机构信息

Faculty of Systems Engineering, Wakayama University 930 Sakaedani Wakayama 640-8510 Japan

出版信息

RSC Adv. 2020 Jul 1;10(41):24730-24742. doi: 10.1039/d0ra01357a. eCollection 2020 Jun 24.

DOI:10.1039/d0ra01357a
PMID:35516213
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9055173/
Abstract

The intrinsic dynamic and static nature of each HB in the multi-HBs between nucleobase pairs (Nu-Nu') is elucidated with QTAIM dual functional analysis (QTAIM-DFA). Perturbed structures generated using coordinates derived from the compliance constants ( ) are employed for QTAIM-DFA. The method is called CIV. Two, three, or four HBs are detected for Nu-Nu'. Each HB in Nu-Nu' is predicted to have the nature of CT-TBP (trigonal bipyramidal adduct formation through charge transfer (CT)), CT-MC (molecular complex formation through CT), or t-HB (typical HB with covalency), while the vdW nature is predicted for the C-H⋯X interactions, for example. Energies for the formation of the pairs (Δ) are linearly correlated with the total values of in Nu-Nu'. The total values are obtained by summing each value, similarly to the case of Ohm's law for the parallel connection in the electric resistance. The total Δ value for a nucleobase pair could be fractionalized to each HB, based on each value. The perturbed structures generated with CIV are very close to those generated with the partial optimization method, when the changes in the interaction distances are very small. The results provide useful insights for better understanding DNA processes, although they are highly enzymatic.

摘要

通过量子拓扑原子分子相互作用理论双功能分析(QTAIM-DFA)阐明了核碱基对(Nu-Nu')之间多氢键体系中每个氢键的内在动态和静态性质。使用从柔顺常数( )导出的坐标生成的微扰结构用于QTAIM-DFA。该方法称为CIV。在Nu-Nu'中检测到两个、三个或四个氢键。预计Nu-Nu'中的每个氢键具有电荷转移-三角双锥加合物形成(CT-TBP)、电荷转移-分子复合物形成(CT-MC)或典型共价氢键(t-HB)的性质,而对于例如C-H⋯X相互作用则预测为范德华性质。形成这些对的能量(Δ)与Nu-Nu'中 的总值呈线性相关。总 值是通过将每个 值相加得到的,类似于电阻并联时欧姆定律的情况。基于每个 值,核碱基对的总Δ值可以分配到每个氢键。当相互作用距离的变化非常小时,用CIV生成的微扰结构与用部分优化方法生成的结构非常接近。尽管这些结果具有高度酶促性,但它们为更好地理解DNA过程提供了有用的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8313/9055173/664b4c45b331/d0ra01357a-f2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8313/9055173/2aa1cb4d6d00/d0ra01357a-f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8313/9055173/664b4c45b331/d0ra01357a-f2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8313/9055173/2aa1cb4d6d00/d0ra01357a-f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8313/9055173/664b4c45b331/d0ra01357a-f2.jpg

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