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溶液中鸟苷-胞嘧啶碱基对的 N-H 伸缩振动:超快动力学、耦合和谱线形状。

N-H stretching vibrations of guanosine-cytidine base pairs in solution: ultrafast dynamics, couplings, and line shapes.

机构信息

Max-Born-Institut für Nichtlineare Optik und Kurzzeitspektroskopie, Max-Born-Strasse 2 A, 12489 Berlin, Germany.

出版信息

J Phys Chem A. 2013 Feb 7;117(5):845-54. doi: 10.1021/jp309237u. Epub 2013 Jan 29.

DOI:10.1021/jp309237u
PMID:23317104
Abstract

Dynamics and couplings of N-H stretching vibrations of chemically modified guanosine-cytidine (G·C) base pairs in chloroform are investigated with linear infrared spectroscopy and ultrafast two-dimensional infrared (2D-IR) spectroscopy. Comparison of G·C absorption spectra before and after H/D exchange reveals significant N-H stretching absorption in the region from 2500 up to 3300 cm(-1). Both of the local stretching modes ν(C)(NH(2))(b) of the hydrogen-bonded N-H moiety of the cytidine NH(2) group and ν(G)(NH) of the guanosine N-H group contribute to this broad absorption band. Its complex line shape is attributed to Fermi resonances of the N-H stretching modes with combination and overtones of fingerprint vibrations and anharmonic couplings to low-frequency modes. Cross-peaks in the nonlinear 2D spectra between the 3491 cm(-1) free N-H oscillator band and the bands centered at 3145 and 3303 cm(-1) imply N-H···O═C hydrogen bond character for both of these transitions. Time evolution illustrates that the 3303 cm(-1) band is composed of a nearly homogeneous band absorbing at 3301 cm(-1), ascribed to ν(G)(NH(2))(b), and a broad inhomogeneous band peaking at 3380 cm(-1) with mainly guanosine carbonyl overtone character. Kinetics and signal strengths indicate a <0.2 ps virtually complete population transfer from the excited ν(G)(NH(2))(b) mode to the ν(G)(NH) mode at 3145 cm(-1), suggesting lifetime broadening as the dominant source for the homogeneous line shape of the 3301 cm(-1) transition. For the 3145 cm(-1) band, a 0.3 ps population lifetime was obtained.

摘要

用线性红外光谱和超快二维红外(2D-IR)光谱研究了氯仿中化学修饰的鸟苷-胞嘧啶(G·C)碱基对的 N-H 伸缩振动的动力学和耦合。G·C 吸收光谱在 H/D 交换前后的比较表明,在 2500 至 3300 cm(-1)的区域有显著的 N-H 伸缩吸收。氢键结合的胞嘧啶 NH(2)基团的 N-H 部分的局部伸缩模式 ν(C)(NH(2))(b)和鸟苷 N-H 基团的 ν(G)(NH)都有助于这个宽的吸收带。其复杂的线形归因于 N-H 伸缩模式与指纹振动的组合和泛音以及低频率模式的非谐耦合的费米共振。非线性 2D 光谱中 3491 cm(-1)自由 N-H 振荡器带与位于 3145 和 3303 cm(-1)处的带之间的交叉峰表明这两个跃迁都具有 N-H···O ═ C 氢键性质。时间演化表明,3303 cm(-1)带由一个在 3301 cm(-1)处吸收的几乎均匀的带组成,归因于 ν(G)(NH(2))(b),和一个在 3380 cm(-1)处的宽的非均匀带,主要具有鸟苷羰基泛音性质。动力学和信号强度表明,在 3145 cm(-1)处,从激发的 ν(G)(NH(2))(b)模式到 ν(G)(NH)模式几乎完全有 <0.2 ps 的人口转移,这表明寿命展宽是 3301 cm(-1)跃迁的均匀线形的主要来源。对于 3145 cm(-1)带,获得了 0.3 ps 的人口寿命。

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