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氢键连接的核酸碱基对的精确相互作用能。

Accurate interaction energies of hydrogen-bonded nucleic acid base pairs.

作者信息

Sponer Jirí, Jurecka Petr, Hobza Pavel

机构信息

Institute of Biophysics, Academy of Sciences of the Czech Republic, Kralovopolska 135, 612 65 Brno, Czech Republic.

出版信息

J Am Chem Soc. 2004 Aug 18;126(32):10142-51. doi: 10.1021/ja048436s.

Abstract

Hydrogen-bonded nucleic acids base pairs substantially contribute to the structure and stability of nucleic acids. The study presents reference ab initio structures and interaction energies of selected base pairs with binding energies ranging from -5 to -47 kcal/mol. The molecular structures are obtained using the RI-MP2 (resolution of identity MP2) method with extended cc-pVTZ basis set of atomic orbitals. The RI-MP2 method provides results essentially identical with the standard MP2 method. The interaction energies are calculated using the Complete Basis Set (CBS) extrapolation at the RI-MP2 level. For some base pairs, Coupled-Cluster corrections with inclusion of noniterative triple contributions (CCSD(T)) are given. The calculations are compared with selected medium quality methods. The PW91 DFT functional with the 6-31G basis set matches well the RI-MP2/CBS absolute interaction energies and reproduces the relative values of base pairing energies with a maximum relative error of 2.6 kcal/mol when applied with Becke3LYP-optimized geometries. The Becke3LYP DFT functional underestimates the interaction energies by few kcal/mol with relative error of 2.2 kcal/mol. Very good performance of nonpolarizable Cornell et al. force field is confirmed and this indirectly supports the view that H-bonded base pairs are primarily stabilized by electrostatic interactions.

摘要

氢键结合的核酸碱基对极大地有助于核酸的结构和稳定性。该研究给出了选定碱基对的从头算参考结构和相互作用能,其结合能范围为-5至-47千卡/摩尔。分子结构是使用RI-MP2(单位分辨MP2)方法和扩展的cc-pVTZ原子轨道基组获得的。RI-MP2方法提供的结果与标准MP2方法基本相同。相互作用能是在RI-MP2水平上使用完全基组(CBS)外推法计算的。对于一些碱基对,给出了包含非迭代三重贡献的耦合簇校正(CCSD(T))。将计算结果与选定的中等质量方法进行了比较。采用Becke3LYP优化几何结构时,具有6-31G基组的PW91密度泛函与RI-MP2/CBS绝对相互作用能匹配良好,并且再现了碱基配对能的相对值,最大相对误差为2.6千卡/摩尔。Becke3LYP密度泛函低估了相互作用能几个千卡/摩尔,相对误差为2.2千卡/摩尔。不可极化的康奈尔等人的力场表现出非常好的性能,这间接支持了氢键结合的碱基对主要通过静电相互作用稳定的观点。

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