Fourré Isabelle, Di Meo Florent, Podloucká Pavlína, Otyepka Michal, Trouillas Patrick
Sorbonne Universités, UPMC Univ Paris 6, CNRS, Laboratoire de chimie théorique, 4 place Jussieu, 75005, Paris, France.
Inserm U850, Univ Limoges, Faculty of Pharmacy, 2 rue du Dr Marcland, 87025, Limoges, France.
J Mol Model. 2016 Aug;22(8):190. doi: 10.1007/s00894-016-3051-8. Epub 2016 Jul 24.
Quercetin is a prototypical antioxidant and prominent member of flavonoids, a large group of natural polyphenols. The oxidation of quercetin may lead to its dimerization, which is a paradigm of the more general polyphenol oligomerization. There exist two opposing mechanisms to describe the dimerization process, namely radical-coupling or Diels-Alder reactions. This work presents a comprehensive rationalization of this dimerization process, acquired from density functional theory (DFT) calculations. It is found that the two-step radical-coupling pathway is thermodynamically and kinetically preferred over the Diels-Alder reaction. This is in agreement with the experimental results showing the formation of only one isomer, whereas the Diels-Alder mechanism would yield two isomers. The evolution in bonding, occurring during these two processes, is investigated using the atoms in molecules (AIM) and electron localization function (ELF) topological approaches. It is shown that some electron density is accumulated between the fragments in the transition state of the radical-coupling reaction, but not in the transition state of the Diels-Alder process. Graphical Abstract Quantum chemistry calculations of the dimerization process of quercetin show that a radical coupling approach is preferred to a Diels-Alder type reaction, in agreement with experimental results. Analysis of the bonding evolution highlights the reaction mechanism.
槲皮素是一种典型的抗氧化剂,也是黄酮类化合物中的重要成员,黄酮类是一大类天然多酚。槲皮素的氧化可能导致其二聚化,这是更普遍的多酚低聚化的一个范例。存在两种相反的机制来描述二聚化过程,即自由基偶联或狄尔斯-阿尔德反应。这项工作从密度泛函理论(DFT)计算出发,对这一二聚化过程进行了全面的阐释。研究发现,两步自由基偶联途径在热力学和动力学上比狄尔斯-阿尔德反应更具优势。这与实验结果一致,实验结果表明只形成了一种异构体,而狄尔斯-阿尔德机制会产生两种异构体。利用分子中的原子(AIM)和电子定位函数(ELF)拓扑方法研究了这两个过程中键合的演变。结果表明,在自由基偶联反应的过渡态中,片段之间积累了一些电子密度,而在狄尔斯-阿尔德过程的过渡态中则没有。图形摘要 槲皮素二聚化过程的量子化学计算表明,与实验结果一致,自由基偶联方法优于狄尔斯-阿尔德型反应。对键合演变的分析突出了反应机理。