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核酸模型构建:与特定碱基形态相关的多种主链解决方案。

Nucleic acid model building: the multiple backbone solutions associated with a given base morphology.

作者信息

Srinivasan A R, Olson W K

机构信息

Department of Chemistry, Rutgers, State University, New Brunswick, New Jersey 08903.

出版信息

J Biomol Struct Dyn. 1987 Jun;4(6):895-938. doi: 10.1080/07391102.1987.10507690.

DOI:10.1080/07391102.1987.10507690
PMID:3270539
Abstract

A constrained model building procedure is used to generate nucleic acid structures of the familiar A-, B-, and Z-DNA duplexes. Attention is focused upon the multiple structural solutions associated with the arrangements of nucleic acid base pairs rather than the optimum sugar-phosphate structure. The glycosyl (chi) and sugar torsions (both the ring puckering and the exocyclic C5'-C4' (psi) torsion) are treated as independent variables and the resulting O3'...O5' distances are used as closure determinants. When such distances conform to the known geometry of phosphate chemical bonding, an intervening phosphorus atom with correct C-O-P valence angles can be located. Four sequential torsion angles--phi', omega', omega and phi--about the C3'-O3'-P-O5'-C5' bonds are then obtained as dependent variables. The resulting structures are categorized in terms of conformation, ranked in potential energy, and analyzed for torsional correlations. The numerical results are quite interesting with implications regarding nucleic acid models constructed to fit less than ideal experimental data. The multiple solutions to the problem are useful for comprehending the conformational complexities of the local sugar-phosphate backbone and for understanding the transitions between different helical forms. According to these studies, unique characterization of a nucleic acid duplex involves more than the determination of its base pair morphology, its sugar puckering preferences, or its groove binding features.

摘要

一种受限模型构建程序被用于生成常见的A-、B-和Z-DNA双链体的核酸结构。重点关注与核酸碱基对排列相关的多种结构解决方案,而非最佳的糖-磷酸结构。糖基(χ)和糖扭转角(包括环的褶皱和环外C5'-C4'(ψ)扭转角)被视为独立变量,所得的O3'...O5'距离用作封闭决定因素。当这些距离符合磷酸盐化学键的已知几何结构时,具有正确C-O-P价键角的中间磷原子就可以被定位。然后,作为因变量获得围绕C3'-O3'-P-O5'-C5'键的四个连续扭转角——φ'、ω'、ω和φ。所得结构根据构象进行分类,按势能排序,并分析扭转相关性。数值结果相当有趣,对为拟合不太理想的实验数据而构建的核酸模型具有启示意义。该问题的多种解决方案有助于理解局部糖-磷酸主链的构象复杂性,以及理解不同螺旋形式之间的转变。根据这些研究,核酸双链体的独特表征涉及的不仅仅是其碱基对形态、糖环褶皱偏好或沟槽结合特征的确定。

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