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二维电子光谱学作为一种跟踪 DNA/RNA 聚集体中分子构象的工具。

Two-dimensional electronic spectroscopy as a tool for tracking molecular conformations in DNA/RNA aggregates.

机构信息

Univ Lyon, Ens de Lyon, CNRS, Université Claude Bernard Lyon 1, Laboratoire de Chimie UMR 5182, F-69342, Lyon, France.

出版信息

Faraday Discuss. 2018 Apr 17;207(0):233-250. doi: 10.1039/c7fd00201g.

Abstract

A computational strategy to simulate two-dimensional electronic spectra (2DES) is introduced, which allows us to analyse ground state dynamics and to sample and measure different conformations attained by flexible molecular systems in solution. An explicit mixed quantum mechanics/molecular mechanics (QM/MM) approach is employed for the evaluation of the necessary electronic excited state energies and transition dipole moments. The method is applied towards a study of the highly flexible water-solvated adenine-adenine monophosphate (ApA), a system featuring two interacting adenine moieties that display various intermolecular arrangements, known to deeply affect their photochemical outcome. Molecular dynamics simulations and cluster analysis have been used to select the molecular conformations, reducing the complexity of the flexible ApA conformational space. By using our sum-over-states (SOS) approach to obtain the 2DES spectra for each of these selected conformations, we can discern spectral changes and relate them to specific nuclear arrangements: close lying π-stacked bases exhibit a splitting of their respective 1La signal traces; T-stacked bases exhibit the appearance of charge transfer states in the low-energy Vis probing window while displaying no 1La splitting, being particularly favoured when promoting amino to 5-ring interactions; unstacked and distant adenine moieties exhibit signals similar to those of the adenine monomer, as is expected for non-interacting nucleobases. 2DES maps reveal the spectral fingerprints associated with specific molecular conformations, and are thus a promising option to enable their quantitative spectroscopic detection beyond standard 1D pump-probe techniques. This is expected to aid the understanding of how nucleobase aggregation controls and modulates the photostability and photo-damage of extended DNA/RNA systems.

摘要

引入了一种模拟二维电子光谱(2DES)的计算策略,该策略允许我们分析基态动力学,并采样和测量在溶液中柔性分子系统获得的不同构象。采用显式混合量子力学/分子力学(QM/MM)方法来评估必要的电子激发态能量和跃迁偶极矩。该方法应用于高度灵活的水合腺嘌呤-腺嘌呤单磷酸(ApA)的研究,该系统具有两个相互作用的腺嘌呤部分,它们显示出各种分子间排列,已知这些排列会深深影响它们的光化学结果。分子动力学模拟和聚类分析已用于选择分子构象,从而降低了柔性 ApA 构象空间的复杂性。通过使用我们的状态求和(SOS)方法为每个所选构象获得 2DES 光谱,我们可以辨别光谱变化并将其与特定的核排列相关联:紧密堆积的π-堆积碱基表现出各自的 1La 信号迹的分裂;T-堆积碱基在低能 Vis 探测窗口中显示出电荷转移态的出现,而没有 1La 分裂,当促进氨基与 5 元环相互作用时特别有利;未堆积和远离的腺嘌呤部分表现出与腺嘌呤单体相似的信号,这是预期的非相互作用核碱基。2DES 图谱揭示了与特定分子构象相关的光谱指纹,因此是一种很有前途的选择,可以实现对标准 1D 泵浦探测技术以外的特定分子构象的定量光谱检测。这有望有助于理解核碱基聚集如何控制和调节扩展 DNA/RNA 系统的光稳定性和光损伤。

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