Bardon Alma B, Wetmore Stacey D
Department of Chemistry, Mount Allison University, 63C York Street, Sackville, New Brunswick E4L 1G8, Canada.
J Phys Chem A. 2005 Jan 13;109(1):262-72. doi: 10.1021/jp046957w.
Density functional theory was used to study the potential energy surface for rotation about the carbon-carbon bonds in a variety of guanosine, adenosine, and inosine fleximers, which are modified purines with the imidazole and pyrimidine rings separated by a single carbon-carbon bond. Various connectivities between C4 or C5 of the imidazole ring and C5' or C6' of the pyrimidine ring were considered. Calculations on fleximer nucleobases in the absence of the ribose moiety suggest that a planar relative arrangement of the imidazole and pyrimidine rings is favored, and that all fleximers are indeed very flexible with regards to rotation about the carbon-carbon bond, where calculated barriers are generally less than 40 kJ mol(-1). Furthermore, calculated binding energies of fleximer-pyrimidine pairs indicate that the hydrogen-bonding properties of these modified nucleobases mimic those of the corresponding natural purine. Inclusion of the sugar moiety often leads to a favored nonplanar orientation of the two rings, and either a reduction in the rotational barrier height or small changes in the rotational surface depending on the connectivity and nucleobase considered. It is concluded that several connectivities may have favorable properties for biochemical applications where flexible nucleobases would be beneficial.
密度泛函理论用于研究多种鸟苷、腺苷和肌苷柔性异构体中围绕碳 - 碳键旋转的势能面,这些柔性异构体是咪唑环和嘧啶环由单个碳 - 碳键隔开的修饰嘌呤。考虑了咪唑环的C4或C5与嘧啶环的C5'或C6'之间的各种连接方式。在没有核糖部分的情况下对柔性异构体核碱基的计算表明,咪唑环和嘧啶环的平面相对排列是有利的,并且所有柔性异构体在围绕碳 - 碳键旋转方面确实非常灵活,计算出的势垒通常小于40 kJ mol⁻¹。此外,柔性异构体 - 嘧啶对的计算结合能表明,这些修饰核碱基的氢键性质与相应天然嘌呤的氢键性质相似。包含糖部分通常会导致两个环倾向于非平面取向,并且根据所考虑的连接方式和核碱基,旋转势垒高度会降低或旋转面会有小的变化。得出的结论是,几种连接方式可能具有有利于生化应用的良好性质,在这些应用中柔性核碱基将是有益的。