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核酸碱基的非谐性振动:正规及错配碱基对的一维和二维红外光谱及其结构基础
引用本文:王桂秀,赵娟,王建平.核酸碱基的非谐性振动:正规及错配碱基对的一维和二维红外光谱及其结构基础[J].中国科学:化学,2011(8):1387-1405.
作者姓名:王桂秀  赵娟  王建平
作者单位:北京分子科学国家实验室分子反应动力学国家重点实验室中国科学院化学研究所;
基金项目:国家自然科学基金(20773136和30870591); 国家重点基础研究发展规划(973计划,2007CB815205); 中国科学院知识创新工程(KJCX2-EW-H01);中国科学院百人计划的支持
摘    要:用量子化学计算研究了正规Watson-Crick碱基对和四例典型的错配碱基对.对碱基单体和二聚体进行了详细的非谐性频率分析,以揭示其结构方面的一些振动特征.研究发现这些振动特征能在模拟的一维和二维红外光谱中很好地表现出来.利用势能分布研究了所选简正模式的离域化程度,发现从孤立的碱基单体到参与氢键的二聚体,模式的离域化程度变化很大;同时,这些模式的非谐性常数也发生了相应的改变.以人们通常认为的位于红外光谱中6-μm波长区域的羰基伸缩模式为例进行了探讨.

关 键 词:量子化学计算  正规Watson-Crick碱基对  错配碱基对  非谐性振动  红外  

Anharmonic vibrations of nucleobases:Structural basis of one-and two-dimensional infrared spectra for canonical and mismatched base pairs
WANG GuiXiu,ZHAO Juan & WANG JianPing Beijing National Laboratory for Molecular Sciences,State Key Laboratory of Molecular Reaction Dynamics.Anharmonic vibrations of nucleobases:Structural basis of one-and two-dimensional infrared spectra for canonical and mismatched base pairs[J].Scientia Sinica Chimica,2011(8):1387-1405.
Authors:WANG GuiXiu  ZHAO Juan & WANG JianPing Beijing National Laboratory for Molecular Sciences  State Key Laboratory of Molecular Reaction Dynamics
Institution:WANG GuiXiu,ZHAO Juan & WANG JianPing Beijing National Laboratory for Molecular Sciences,State Key Laboratory of Molecular Reaction Dynamics,Institute of Chemistry,Chinese Academy of Sciences,Beijing 100190,China
Abstract:In this work,canonical Watson-Crick base pairs and four representative mismatched base pairs were studied by quantum chemical computations.Detailed anharmonic vibrational analysis was carried out to reveal some vibrational signatures in structural aspect of the base monomers and dimers,which,were well manifested in simulated 1D IR and 2D IR spectra.Delocalization degree of the selected normal modes,represented by the potential energy distribution,was found to vary significantly from isolated bases to H-bond...
Keywords:quantum chemical computation  canonical Watson-Crick base pair  mismatched base pair  anharmonic vibration  infrared  
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