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碱基对在鸟嘌呤四链体中的结构双重性控制其低能光致电离。

The Structural Duality of Nucleobases in Guanine Quadruplexes Controls Their Low-Energy Photoionization.

机构信息

Université Paris-Saclay, CEA, CNRS, LIDYL, F-91191 Gif-sur-Yvette, France.

Departamento de Química, Facultad de Ciencias and Institute for Advanced Research in Chemistry (IADCHEM), Universidad Autónoma de Madrid, Campus de Excelencia UAM-CSIC, Cantoblanco, 28049 Madrid, Spain.

出版信息

J Phys Chem Lett. 2021 Sep 2;12(34):8309-8313. doi: 10.1021/acs.jpclett.1c01846. Epub 2021 Aug 24.

Abstract

Guanine quadruplexes are four-stranded DNA/RNA structures composed of a guanine core (vertically stacked guanine tetrads) and peripheral groups (dangling ends and/or loops). Such a dual structural arrangement of the nucleobases favors their photoionization at energies significantly lower than the guanine ionization potential. This effect is important with respect to the oxidative DNA damage and for applications in the field of optoelectronics. Photoionization quantum yields, determined at 266 nm by nanosecond transient absorption spectroscopy, strongly depend on both the type and position of the peripheral nucleobases. The highest value (1.5 × 10) is found for the tetramolecular structure (AGA) in which adenines are intermittently stacked on the adjacent guanine tetrads, as determined by nuclear magnetic resonance spectroscopy. Quantum chemistry calculations show that peripheral nucleobases interfere in a key step preceding electron ejection: charge separation, initiated by the population of charge transfer states during the relaxation of electronic excited states.

摘要

鸟嘌呤四链体是由一个鸟嘌呤核心(垂直堆叠的鸟嘌呤四联体)和外围基团(悬垂末端和/或环)组成的四链 DNA/RNA 结构。这种碱基的双重结构排列有利于它们在能量显著低于鸟嘌呤电离势的情况下发生光电离。这种效应对于氧化 DNA 损伤很重要,并且在光电子学领域有应用。通过纳秒瞬态吸收光谱在 266nm 处测定的光电离量子产率强烈依赖于外围碱基的类型和位置。在外围碱基为腺嘌呤且间歇性地堆积在相邻的鸟嘌呤四联体上的四聚体结构(AGA)中,量子产率最高(1.5×10),这是通过核磁共振光谱确定的。量子化学计算表明,外围碱基会干扰电子发射前的关键步骤:电荷分离,这是通过电子激发态弛豫过程中电荷转移态的填充引发的。

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