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核酸碱基三聚体的基准RI-MP2数据库:不同密度泛函模型对结构和结合能预测的性能

Benchmark RI-MP2 database of nucleic acid base trimers: performance of different density functional models for prediction of structures and binding energies.

作者信息

Kabelác Martin, Valdes Haydee, Sherer Edward C, Cramer Christopher J, Hobza Pavel

机构信息

Institute of Organic Chemistry and Biochemistry, Academy of Sciences of the Czech Republic and Center for Complex Molecular Systems and Biomolecules, Flemingovo nám 2, 166 10, Prague 6, Czech Republic.

出版信息

Phys Chem Chem Phys. 2007 Sep 28;9(36):5000-8. doi: 10.1039/b707182e. Epub 2007 Jul 9.

Abstract

A new database of nucleic acid base trimers has been developed that includes 141 geometries and stabilization energies obtained at the RI-MP2 level of theory with the TZVPP basis set. Compared to previously compiled biologically oriented databases, this new construct includes considerably more complicated structures; the various intermolecular interactions in the trimers are quite heterogeneous and in particular include simultaneous hydrogen bonding and stacking interactions, which is similar to the situation in actual biopolymers. Validation against these benchmark data is therefore a more demanding task for approximate models, since correct descriptions of all energy terms are unlikely to be accomplished by fortuitous cancellations of systematic errors. The density functionals TPSS (both with and without an empirical dispersion term), PWB6K, M05-2X, and BH&H, and the self-consistent charge density functional tight binding method augmented with an empirical dispersion term (SCC-DFTB-D) were assessed for their abilities accurately to compute structures and energies. The best reproduction of the BSSE corrected RI-MP2 stabilization energies was achieved by the TPSS functional (TZVPP basis set) combined with empirical dispersion; removal of the dispersion correction leads to significantly degraded performance. The M05-2X and PWB6K functionals performed very well in reproducing the RI-MP2 geometries, but showed a systematic moderate underestimation of the magnitude of base stacking interactions. The SCC-DFTB-D method predicts geometries in fair agreement with RI-MP2; given its computational efficiency it represents a good option for initial scanning of analogous biopolymeric potential energy surfaces. BH&H gives geometries of comparable quality to the other functionals but significantly overestimates interaction energies other than stacking.

摘要

已开发出一个新的核酸碱基三聚体数据库,其中包含141种几何结构以及在理论的RI-MP2水平下使用TZVPP基组获得的稳定能。与之前编纂的面向生物学的数据库相比,这个新构建的数据库包含更为复杂的结构;三聚体中的各种分子间相互作用差异很大,尤其包括同时存在的氢键和堆积相互作用,这与实际生物聚合物中的情况类似。因此,对于近似模型而言,根据这些基准数据进行验证是一项要求更高的任务,因为不太可能通过系统误差的偶然抵消来正确描述所有能量项。评估了密度泛函TPSS(有无经验色散项)、PWB6K、M05-2X和BH&H,以及添加了经验色散项的自洽电荷密度泛函紧束缚方法(SCC-DFTB-D)准确计算结构和能量的能力。通过结合经验色散的TPSS泛函(TZVPP基组),能最佳地重现经BSSE校正的RI-MP2稳定能;去除色散校正会导致性能显著下降。M05-2X和PWB6K泛函在重现RI-MP2几何结构方面表现非常出色,但对碱基堆积相互作用的大小表现出系统性的适度低估。SCC-DFTB-D方法预测的几何结构与RI-MP2相当吻合;鉴于其计算效率,它是对类似生物聚合物势能面进行初步扫描的一个不错选择。BH&H给出的几何结构质量与其他泛函相当,但显著高估了除堆积以外的相互作用能。

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