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研究 N-H…O=C 和 C-H…O=C 相互作用对 β-折叠模型结合能的个体贡献。

Investigation on the individual contributions of N-H...O=C and C-H...O=C interactions to the binding energies of beta-sheet models.

机构信息

School of Chemistry and Chemical Engineering, Liaoning Normal University, Dalian 116029, People's Republic of China.

出版信息

J Comput Chem. 2010 Apr 15;31(5):1036-44. doi: 10.1002/jcc.21390.

Abstract

In this article, the binding energies of 16 antiparallel and parallel beta-sheet models are estimated using the analytic potential energy function we proposed recently and the results are compared with those obtained from MP2, AMBER99, OPLSAA/L, and CHARMM27 calculations. The comparisons indicate that the analytic potential energy function can produce reasonable binding energies for beta-sheet models. Further comparisons suggest that the binding energy of the beta-sheet models might come mainly from dipole-dipole attractive and repulsive interactions and VDW interactions between the two strands. The dipole-dipole attractive and repulsive interactions are further obtained in this article. The total of N-H...H-N and C=O...O=C dipole-dipole repulsive interaction (the secondary electrostatic repulsive interaction) in the small ring of the antiparallel beta-sheet models is estimated to be about 6.0 kcal/mol. The individual N-H...O=C dipole-dipole attractive interaction is predicted to be -6.2 +/- 0.2 kcal/mol in the antiparallel beta-sheet models and -5.2 +/- 0.6 kcal/mol in the parallel beta-sheet models. The individual C(alpha)-H...O=C attractive interaction is -1.2 +/- 0.2 kcal/mol in the antiparallel beta-sheet models and -1.5 +/- 0.2 kcal/mol in the parallel beta-sheet models. These values are important in understanding the interactions at protein-protein interfaces and developing a more accurate force field for peptides and proteins.

摘要

在本文中,我们使用最近提出的解析势能函数估算了 16 个反平行和平行β-折叠模型的结合能,并将结果与 MP2、AMBER99、OPLSAA/L 和 CHARMM27 计算结果进行了比较。比较表明,解析势能函数可以为β-折叠模型产生合理的结合能。进一步的比较表明,β-折叠模型的结合能可能主要来自于偶极-偶极吸引和排斥相互作用以及两条链之间的 VDW 相互作用。本文进一步获得了偶极-偶极吸引和排斥相互作用。反平行β-折叠模型小环中 N-H…H-N 和 C=O…O=C 偶极-偶极排斥相互作用(二级静电排斥相互作用)的总和估计约为 6.0 kcal/mol。预测反平行β-折叠模型中单个 N-H…O=C 偶极-偶极吸引相互作用为-6.2±0.2 kcal/mol,平行β-折叠模型中为-5.2±0.6 kcal/mol。反平行β-折叠模型中单个 C(alpha)-H…O=C 吸引相互作用为-1.2±0.2 kcal/mol,平行β-折叠模型中为-1.5±0.2 kcal/mol。这些值对于理解蛋白质-蛋白质界面的相互作用以及开发更准确的肽和蛋白质力场非常重要。

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