Sponer J, Burda J V, Leszczynksi J, Hobza P
J. Heyrovský Institute of Physical Chemistry, Academy of Sciences of the Czech Republic, Prague.
J Biomol Struct Dyn. 1999 Aug;17(1):61-77. doi: 10.1080/07391102.1999.10508341.
The structures and energies of the thioguanine-cytosine Watson-Crick (thioGC WC) base pair interacting with hydrated IIa (Mg2+, Ca2+, Ba2+) and IIb group (Zn2+, Cd2+, Hg2+) cations have been studied using ab initio techniques. Furthermore, complexes between guanine and thioguanine with hydrated cations have been characterized assuming various structures of the hydration shells. The complexes of the thioGC WC base pair with hydrated cations have similar properties as the previously studied GC WC base pair. There is substantial polarization stabilization of the base pairing due to cation binding which amounts to 7 - 11 kcal/mol. Soft Cd2+ and Hg2+ cations have a uniquely strong interaction with the thiogroup and induce substantial nonplanarity of the pairing. The thiogroup tends to reduce the number of water molecules in the first hydration shell of the cation. All complexes were optimized within the Hartree-Fock (HF) approximation while their energetics has been evaluated using the second-order Moller-Plesset perturbational method (MP2). All interaction energy evaluations and a substantial portion of the optimizations of the hydrated cation-(thio)guanine complexes have been repeated using Becke-3LYP Density Functional Theory method. All three approximations used (HF, Becke-3LYP, and MP2) give qualitatively the same results for the present cationic complexes. The results demonstrate specific differences among the cations and provide a set of reference structures and energies for verification and/or parametrization of empirical potentials and other theoretical methods.
已使用从头算技术研究了与水合IIa族(Mg2+、Ca2+、Ba2+)和IIb族(Zn2+、Cd2+、Hg2+)阳离子相互作用的硫代鸟嘌呤-胞嘧啶沃森-克里克(硫代GC WC)碱基对的结构和能量。此外,假定水合壳层具有各种结构,对鸟嘌呤和硫代鸟嘌呤与水合阳离子之间的配合物进行了表征。硫代GC WC碱基对与水合阳离子的配合物具有与先前研究的GC WC碱基对相似的性质。由于阳离子结合,碱基配对存在显著的极化稳定作用,其能量为7 - 11千卡/摩尔。软Cd2+和Hg2+阳离子与硫基具有独特的强相互作用,并导致配对显著的非平面性。硫基倾向于减少阳离子第一水合壳层中的水分子数量。所有配合物均在哈特里-福克(HF)近似下进行了优化,而其能量则使用二阶莫勒-普列斯塞微扰方法(MP2)进行了评估。使用贝克-3LYP密度泛函理论方法重复了所有相互作用能评估以及水合阳离子-(硫代)鸟嘌呤配合物的大部分优化。所使用的三种近似方法(HF、贝克-3LYP和MP2)对当前阳离子配合物给出了定性相同的结果。结果表明了阳离子之间的特定差异,并提供了一组参考结构和能量,用于验证和/或参数化经验势及其他理论方法。