Monajjemi M, Chahkandi B, Zare K, Amiri A
Science and Research Campus, Islamic Azad University, Hesarak, Poonak, PO Box 14515-775, Tehran, Iran.
Biochemistry (Mosc). 2005 Mar;70(3):366-76. doi: 10.1007/s10541-005-0123-2.
In order to gain deeper insight into structure, charge distribution, and energies of A-T base pairs, we have performed quantum chemical ab initio and density functional calculations at the HF (Hartree-Fock) and B3LYP levels with 3-21G*, 6-31G*, 6-31G**, and 6-31++G** basis sets. The calculated donor-acceptor atom distances in the Watson-Crick A-T base pair are in good agreement with the experimental mean values obtained from an analysis of 21 high resolution DNA structures. In addition, for further correction of interaction energies between adenine and thymine, the basis set superposition error (BSSE) associated with the hydrogen bond energy has been computed via the counterpoise method using the individual bases as fragments. In the Watson-Crick A-T base pair there is a good agreement between theory and experimental results. The distances for (N2...H23-N19), (N8-H13...O24), and (C1...O18) are 2.84, 2.94, and 3.63 A, respectively, at B3LYP/6-31G** level, which is in good agreement with experimental results (2.82, 2.98, and 3.52 A). Interaction energy of the Watson-Crick A-T base pair is -13.90 and -10.24 kcal/mol at B3LYP/6-31G** and HF/6-31G** levels, respectively. The interaction energy of model (9) A-T base pair is larger than others, -18.28 and -17.26 kcal/mol, and for model (2) is the smallest value, -13.53 and -13.03 kcal/mol, at B3LYP/6-31G** and B3LYP/6-31++G** levels, respectively. The computed B3LYP/6-31G** bond enthalpies for Watson-Crick A-T pairs of -14.4 kcal/mol agree well with the experimental results of -12.1 kcal/mol deviating by as little as -2.3 kcal/mol. The BSSE of some cases is large (9.85 kcal/mol) and some is quite small (0.6 kcal/mol).
为了更深入地了解A - T碱基对的结构、电荷分布和能量,我们在HF(哈特里 - 福克)和B3LYP水平上,使用3 - 21G*、6 - 31G*、6 - 31G和6 - 31++G基组进行了量子化学从头算和密度泛函计算。在沃森 - 克里克A - T碱基对中计算得到的供体 - 受体原子距离与通过对21个高分辨率DNA结构分析获得的实验平均值高度吻合。此外,为了进一步校正腺嘌呤和胸腺嘧啶之间的相互作用能,与氢键能相关的基组叠加误差(BSSE)已通过使用单个碱基作为片段的平衡方法进行计算。在沃森 - 克里克A - T碱基对中,理论和实验结果之间吻合良好。在B3LYP/6 - 31G水平下,(N2...H23 - N19)、(N8 - H13...O24)和(C1...O18)的距离分别为2.84、2.94和3.63 Å,与实验结果(2.82、2.98和3.52 Å)高度吻合。在B3LYP/6 - 31G和HF/6 - 31G水平下,沃森 - 克里克A - T碱基对的相互作用能分别为 - 13.90和 - 10.24 kcal/mol。在B3LYP/6 - 31G和B3LYP/6 - 31++G水平下,模型(9)A - T碱基对的相互作用能较大,分别为 - 18.28和 - 17.26 kcal/mol,而模型(2)的相互作用能最小,分别为 - 13.53和 - 13.03 kcal/mol。计算得到的沃森 - 克里克A - T对在B3LYP/6 - 31G水平下的键焓为 - 14.4 kcal/mol,与实验结果 - 12.1 kcal/mol吻合良好,偏差仅为 - 2.3 kcal/mol。某些情况下的BSSE较大(9.85 kcal/mol),而某些情况下则非常小(0.6 kcal/mol)。