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质子化胞苷和半质子化胞苷碱基对的光物理性质:一项计算研究。

The photophysics of protonated cytidine and hemiprotonated cytidine base pair: A computational study.

作者信息

Martinez-Fernandez Lara, Improta Roberto

机构信息

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

Consiglio Nazionale delle Ricerche, Istituto di Biostrutture e Bioimmagini (IBB-CNR), Naples, Italy.

出版信息

Photochem Photobiol. 2024 Mar-Apr;100(2):314-322. doi: 10.1111/php.13832. Epub 2023 Jul 6.

Abstract

We here study the effect that a lowering of the pH has on the excited state processes of cytidine and a cytidine/cytidine pair in solution, by integrating time-dependent density functional theory and CASSCF/CASPT2 calculations, and including solvent by a mixed discrete/continuum model. Our calculations reproduce the effect of protonation at N3 on the steady-state infrared and absorption spectra of a protonated cytidine (CH ), and predict that an easily accessible non-radiative deactivation route exists for the spectroscopic state, explaining its sub-ps lifetime. Indeed, an extremely small energy barrier separates the minimum of the lowest energy bright state from a crossing region with the ground electronic state, reached by out-of-plane motion of the hydrogen substituents of the CC double bond, the so-called ethylenic conical intersection typical of cytidine and other pyrimidine bases. This deactivation route is operative for the two bases forming an hemiprotonated cytidine base pair, [CH·C] , the building blocks of I-motif secondary structures, whereas interbase processes play a minor role. N3 protonation disfavors instead the nπ* transitions, associated with the long-living components of cytidine photoactivated dynamics.

摘要

我们通过整合含时密度泛函理论和CASSCF/CASPT2计算,并采用混合离散/连续介质模型纳入溶剂,研究了pH降低对溶液中胞嘧啶核苷及其碱基对激发态过程的影响。我们的计算重现了N3质子化对质子化胞嘧啶核苷(CH)稳态红外光谱和吸收光谱的影响,并预测该光谱态存在一条易于实现的非辐射失活途径,这解释了其亚皮秒寿命。实际上,一个极小的能垒将最低能量亮态的最低点与基态电子态的交叉区域隔开,该交叉区域是通过CC双键氢取代基的面外运动到达的,即胞嘧啶核苷和其他嘧啶碱基典型的烯型锥形交叉。这种失活途径对形成半质子化胞嘧啶核苷碱基对[CH·C]的两个碱基起作用,[CH·C]是I型基序二级结构的组成部分,而碱基间过程起的作用较小。相反,N3质子化不利于与胞嘧啶核苷光活化动力学的长寿命组分相关的nπ*跃迁。

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