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核酸碱基及其硫代和氮杂类似物在溶液中的光化学

Photochemistry of nucleic acid bases and their thio- and aza-analogues in solution.

作者信息

Pollum Marvin, Martínez-Fernández Lara, Crespo-Hernández Carlos E

机构信息

Department of Chemistry and Center for Chemical Dynamics, Case Western Reserve University, 10900 Euclic Avenue, Cleveland, OH, 44106, USA.

出版信息

Top Curr Chem. 2015;355:245-327. doi: 10.1007/128_2014_554.

Abstract

The steady-state and time-resolved photochemistry of the natural nucleic acid bases and their sulfur- and nitrogen-substituted analogues in solution is reviewed. Emphasis is given to the experimental studies performed over the last 3-5 years that showcase topical areas of scientific inquiry and those that require further scrutiny. Significant progress has been made toward mapping the radiative and nonradiative decay pathways of nucleic acid bases. There is a consensus that ultrafast internal conversion to the ground state is the primary relaxation pathway in the nucleic acid bases, whereas the mechanism of this relaxation and the level of participation of the (1)πσ*, (1) nπ*, and (3)ππ* states are still matters of debate. Although impressive research has been performed in recent years, the microscopic mechanism(s) by which the nucleic acid bases dissipate excess vibrational energy to their environment, and the role of the N-glycosidic group in this and in other nonradiative decay pathways, are still poorly understood. The simple replacement of a single atom in a nucleobase with a sulfur or nitrogen atom severely restricts access to the conical intersections responsible for the intrinsic internal conversion pathways to the ground state in the nucleic acid bases. It also enhances access to ultrafast and efficient inter-system crossing pathways that populate the triplet manifold in yields close to unity. Determining the coupled nuclear and electronic pathways responsible for the significantly different photochemistry in these nucleic acid base analogues serves as a convenient platform to examine the current state of knowledge regarding the photodynamic properties of the DNA and RNA bases from both experimental and computational perspectives. Further investigations should also aid in forecasting the prospective use of sulfur- and nitrogen-substituted base analogues in photochemotherapeutic applications.

摘要

本文综述了天然核酸碱基及其硫代和氮代类似物在溶液中的稳态和时间分辨光化学。重点介绍了过去3至5年进行的实验研究,这些研究展示了科学探究的热点领域以及需要进一步审视的领域。在绘制核酸碱基的辐射和非辐射衰变途径方面已经取得了重大进展。人们普遍认为,超快内转换到基态是核酸碱基中的主要弛豫途径,而这种弛豫的机制以及(1)πσ*、(1)nπ和(3)ππ态的参与程度仍存在争议。尽管近年来进行了令人瞩目的研究,但核酸碱基将多余振动能量耗散到周围环境的微观机制,以及N-糖苷基团在这一过程和其他非辐射衰变途径中的作用,仍然知之甚少。在核碱基中用硫或氮原子简单取代单个原子,会严重限制通向负责核酸碱基内转换到基态的固有途径的锥形交叉点。它还增加了通向超快且高效的系间窜越途径的可能性,这些途径以接近100%的产率填充三重态。确定导致这些核酸碱基类似物中光化学显著不同的耦合核和电子途径,为从实验和计算角度审视关于DNA和RNA碱基光动力学性质的现有知识状态提供了一个便利的平台。进一步的研究也应有助于预测硫代和氮代碱基类似物在光化学治疗应用中的潜在用途。

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