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二维红外光谱揭示的核酸碱基的非谐振动模式。

Anharmonic vibrational modes of nucleic acid bases revealed by 2D IR spectroscopy.

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.

出版信息

J Am Chem Soc. 2011 Oct 5;133(39):15650-60. doi: 10.1021/ja205636h. Epub 2011 Sep 12.

Abstract

Polarization-dependent two-dimensional infrared (2D IR) spectra of the purine and pyrimadine base vibrations of five nucleotide monophosphates (NMPs) were acquired in D(2)O at neutral pH in the frequency range 1500-1700 cm(-1). The distinctive cross-peaks between the ring deformations and carbonyl stretches of NMPs indicate that these vibrational modes are highly coupled, in contrast with the traditional peak assignment, which is based on a simple local mode picture such as C═O, C═N, and C═C double bond stretches. A model of multiple anharmonically coupled oscillators was employed to characterize the transition energies, vibrational anharmonicities and couplings, and transition dipole strengths and orientations. No simple or intuitive structural correlations are found to readily assign the spectral features, except in the case of guanine and cytosine, which contain a single local CO stretching mode. To help interpret the nature of these vibrational modes, we performed density functional theory (DFT) calculations and found that multiple ring vibrations are coupled and delocalized over the purine and pyrimidine rings. Generally, there is close correspondence between the experimental and computational results, provided that the DFT calculations include explicit waters solvating hydrogen-bonding sites. These results provide direct experimental evidence of the delocalized nature of the nucleotide base vibrations via a nonperturbative fashion and will serve as building blocks for constructing a structure-based model of DNA and RNA vibrational spectroscopy.

摘要

在中性 pH 值的 D(2)O 中,获得了五种核苷酸单磷酸 (NMP) 的嘌呤和嘧啶碱基振动的偏振相关二维红外 (2D IR) 光谱,频率范围为 1500-1700 cm(-1)。NMP 的环变形和羰基伸展之间的特征交叉峰表明这些振动模式高度耦合,与传统的基于简单局部模式图(如 C=O、C=N 和 C=C 双键伸展)的峰分配形成对比。采用多个非谐耦合振荡器模型来表征跃迁能、振动非谐性和耦合、跃迁偶极矩强度和取向。除了含有单个局部 CO 伸展模式的鸟嘌呤和胞嘧啶外,没有找到简单或直观的结构相关性来轻易分配光谱特征。为了帮助解释这些振动模式的性质,我们进行了密度泛函理论 (DFT) 计算,发现多个环振动通过嘌呤和嘧啶环耦合和离域。通常,实验和计算结果之间存在密切对应关系,前提是 DFT 计算包括明确的水溶剂化氢键位点。这些结果通过非微扰方式提供了核苷酸碱基振动的离域性质的直接实验证据,并将作为构建 DNA 和 RNA 振动光谱的基于结构的模型的构建块。

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