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首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Studying the excited electronic states of guanine rich DNA quadruplexes by quantum mechanical methods: main achievements and perspectives
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Studying the excited electronic states of guanine rich DNA quadruplexes by quantum mechanical methods: main achievements and perspectives

机译:Quantum机械方法研究富含鸟嘌呤富含DNA四翻石的激发电子状态:主要成就与观点

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摘要

The main insights into the photoactivated dynamics of guanine quadruplexes (G4s) recently provided by quantum mechanical computations are concisely reviewed here. The experimental steady state absorption and circular dichroism spectra of different topologies can be reproduced and assigned. After light absorption from excited states delocalized over multiple bases, the most important decay pathways involve localization of the excitation over a single base or on two stacked guanines, excimers with different degrees of charge transfer character. Two main photochemical reactions are discussed. One involves the photodimerization of two stacked guanine bases on the 'neutral' excimer path. The other, ionization of guanine, which triggers deprotonation of the resulting cation to form (G-H2); and (G-H1); radicals. Both the static and dynamical properties of G4 excited states are ruled by their topology and modulated by the inner coordinated metal ions.
机译:本文简要回顾了最近量子力学计算对鸟嘌呤四链体(G4s)光激活动力学的主要见解。不同拓扑结构的实验稳态吸收光谱和圆二色谱光谱可以被复制和分配。激发态在多个碱基上离域吸收光后,最重要的衰减途径涉及激发在单个碱基或两个堆叠的鸟嘌呤上的局部化,即具有不同程度电荷转移特性的准分子。讨论了两种主要的光化学反应。其中一个涉及两个堆叠的鸟嘌呤碱基在“中性”准分子路径上的光二聚。另一种是鸟嘌呤的电离,引发产生的阳离子去质子化形成(G-H2);和(G-H1);激进分子。G4激发态的静态和动态性质受其拓扑结构的控制,并受内部配位金属离子的调制。

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