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紫外线诱导的DNA损伤:电子激发态的作用。

UV-induced DNA Damage: The Role of Electronic Excited States.

作者信息

Markovitsi Dimitra

机构信息

CNRS, IRAMIS, LIDYL, Laboratoire Francis Perrin, URA 2453, F-91191 Gif-sur-Yvette, France.

出版信息

Photochem Photobiol. 2016 Jan-Feb;92(1):45-51. doi: 10.1111/php.12533. Epub 2015 Dec 18.

Abstract

The knowledge of the fundamental processes induced by the direct absorption of UV radiation by DNA allows extrapolating conclusions drawn from in vitro studies to the in-vivo DNA photoreactivity. In this respect, the characterization of the DNA electronic excited states plays a key role. For a long time, the mechanisms of DNA lesion formation were discussed in terms of generic "singlet" and "triplet" excited state reactivity. However, since the beginning of the 21(st) century, both experimental and theoretical studies revealed the existence of "collective" excited states, i.e. excited states delocalized over at least two bases. Two limiting cases are distinguished: Frenkel excitons (delocalized ππ* states) and charge-transfer states in which positive and negative charges are located on different bases. The importance of collective excited states in photon absorption (in particular in the UVA spectral domain), the redistribution of the excitation energy within DNA, and the formation of dimeric pyrimidine photoproducts is discussed. The dependence of the behavior of the collective excited states on conformational motions of the nucleic acids is highlighted.

摘要

通过DNA直接吸收紫外线辐射所引发的基本过程的相关知识,使得我们能够将体外研究得出的结论外推至体内DNA光反应性。在这方面,DNA电子激发态的表征起着关键作用。长期以来,DNA损伤形成的机制一直是根据一般的“单线态”和“三线态”激发态反应性来讨论的。然而,自21世纪初以来,实验和理论研究都揭示了“集体”激发态的存在,即至少在两个碱基上离域的激发态。区分了两种极限情况:弗伦克尔激子(离域的ππ*态)和电荷转移态,其中正电荷和负电荷位于不同的碱基上。讨论了集体激发态在光子吸收(特别是在UVA光谱域)、DNA内激发能的重新分布以及二聚嘧啶光产物形成中的重要性。强调了集体激发态行为对核酸构象运动的依赖性。

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