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关于中性和离子化嘧啶碱及其真空模型吖嗪中的质子转移和键长交替

On Prototropy and Bond Length Alternation in Neutral and Ionized Pyrimidine Bases and Their Model Azines in Vacuo.

作者信息

Raczyńska Ewa Daniela

机构信息

Department of Chemistry, Warsaw University of Life Sciences (SGGW), ul. Nowoursynowska 159c, 02-776 Warszawa, Poland.

出版信息

Molecules. 2023 Oct 26;28(21):7282. doi: 10.3390/molecules28217282.

Abstract

In this review, the complete tautomeric equilibria are derived for disubstituted pyrimidine nucleic acid bases starting from phenol, aniline, and their model compounds-monosubstituted aromatic azines. The differences in tautomeric preferences for isolated (gaseous) neutral pyrimidine bases and their model compounds are discussed in light of different functional groups, their positions within the six-membered ring, electronic effects, and intramolecular interactions. For the discussion of tautomeric preferences and for the analysis of internal effects, recent quantum-chemical results are taken into account and compared to some experimental ones. For each possible tautomer-rotamer of the title compounds, the bond length alternation, measured by means of the harmonic oscillator model of electron delocalization (HOMED) index, is examined. Significant HOMED similarities exist for mono- and disubstituted derivatives. The lack of parallelism between the geometric (HOMED) and energetic (Δ) parameters for all possible isomers clearly shows that aromaticity is not the main factor that dictates tautomeric preferences for pyrimidine bases, particularly for uracil and thymine. The effects of one-electron loss (positive ionization) and one-electron gain (negative ionization) on prototropy and bond length alternation are also reviewed for pyrimidine bases and their models.

摘要

在本综述中,从苯酚、苯胺及其模型化合物——单取代芳族氮杂苯出发,推导了二取代嘧啶核酸碱基的完整互变异构平衡。根据不同的官能团、它们在六元环中的位置、电子效应和分子内相互作用,讨论了孤立(气态)中性嘧啶碱基及其模型化合物在互变异构偏好上的差异。为了讨论互变异构偏好并分析内部效应,考虑了最近的量子化学结果并与一些实验结果进行了比较。对于标题化合物的每个可能的互变异构体-旋转异构体,通过电子离域的谐振子模型(HOMED)指数测量的键长交替进行了研究。单取代和二取代衍生物存在显著的HOMED相似性。所有可能异构体的几何(HOMED)和能量(Δ)参数之间缺乏平行性,清楚地表明芳香性不是决定嘧啶碱基,特别是尿嘧啶和胸腺嘧啶互变异构偏好的主要因素。还综述了单电子损失(正电离)和单电子获得(负电离)对嘧啶碱基及其模型的质子转移和键长交替的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ac0/10648772/9e8e1690fc39/molecules-28-07282-g001.jpg

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