首页> 美国卫生研究院文献>Biophysical Journal >Vibrational analysis of nucleic acids. I. The phosphodiester group in dimethyl phosphate model compounds: (CH3O)2PO2- (CD3O)2PO2- and (13CH3O)2PO2-.
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Vibrational analysis of nucleic acids. I. The phosphodiester group in dimethyl phosphate model compounds: (CH3O)2PO2- (CD3O)2PO2- and (13CH3O)2PO2-.

机译:核酸的振动分析。 I.磷酸二甲酯模型化合物中的磷酸二酯基:(CH 3 O)2 PO 2-(CD 3 O)2 PO 2-和(13CH 3 O)2 PO 2-。

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摘要

Normal coordinate analyses and vibrational assignments are presented for the dimethyl phosphate anion [(CH3O)2PO2-] and its deuteriomethyl [(CD3O)2PO2-] and carbon-13 [(13CH3O)2PO2-] derivatives in the gauche-gauche conformation. The dimethyl phosphate anion, which is the simplest model for the nucleic acid phosphodiester moiety, exhibits many of the spectral complexities of DNA and RNA and has previously resisted a complete and consistent vibrational analysis. In the present study we make use of new experimental data on the dimethyl phosphate isotopomers, including Raman depolarization measurements, to develop a consistent valence force field for normal modes of the C--O--P--O--C phosphodiester network and its hydrogenic substituents, as well as for stretching and bending modes of the O--P--O network of the anionic phosphodioxy group (PO2-). The force field established for dimethyl phosphate incorporates one significant nonbonded force constant, introduced from ab initio calculations, to account for interaction between the two ester C--O bonds. This study resolves previous problematic assignments for conformation-sensitive symmetric (in-phase) and asymmetric (out-of-phase) skeletal stretching modes of the ester linkages and demonstrates substantial anharmonicity in the hydrogen-stretching vibrations of the methyl substituents. New assignments are proposed for Raman bands of the phosphodioxy group, which may serve as potential indicators of structure and interaction of the DNA phosphates.
机译:呈正态坐标分析和振动分配是针对gauche-gauche构象的磷酸二甲酯阴离子[(CH3O)2PO2-]及其氘代甲基[[CD3O)2PO2-]和碳13 [[13CH3O] 2PO2-]衍生物的。磷酸二甲酯阴离子是核酸磷酸二酯部分的最简单模型,它表现出DNA和RNA的许多光谱复杂性,并且以前无法进行完整而一致的振动分析。在本研究中,我们利用有关磷酸二甲酯等位异构体的新实验数据(包括拉曼去极化测量)为C--O--P--O--C磷酸二酯网络的正常模式和它的氢取代基,以及阴离子磷酸二氧基(PO2-)的O--P--O网络的拉伸和弯曲模式。为磷酸二甲酯建立的力场从头算起就引入了一个重要的非键合力常数,以说明两个酯C-O键之间的相互作用。这项研究解决了酯键构象敏感的对称(同相)和不对称(异相)骨架拉伸模式的先前问题分配,并证明了甲基取代基的氢拉伸振动中的显着非谐性。提出了对磷酸二氧基基团的拉曼带的新分配,其可以用作DNA磷酸酯的结构和相互作用的潜在指标。

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