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Benchmark quantum-chemical calculations on a complete set of rotameric families of the DNA sugar-phosphate backbone and their comparison with modern density functional theory

机译:完整的DNA糖-磷酸骨架的旋转异构体家族的基准量子化学计算及其与现代密度泛函理论的比较

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The DNA sugar-phosphate backbone has a substantial influence on the DNA structural dynamics. Structural biology and bioinformatics studies revealed that the DNA backbone in experimental structures samples a wide range of distinct conformational substates, known as rotameric DNA backbone conformational families. Their correct description is essential for methods used to model nucleic acids and is known to be the Achilles heel of force field computations. In this study we report the benchmark database of MP2 calculations extrapolated to the complete basis set of atomic orbitals with aug-cc-pVTZ and aug-cc-pVQZ basis sets, MP2(T,Q), augmented by ACCSD(T)/aug-cc-pVDZ corrections. The calculations are performed in the gas phase as well as using a COSMO solvent model. This study includes a complete set of 18 established and biochemically most important families of DNA backbone conformations and several other salient conformations that we identified in experimental structures. We utilize an electronically sufficiently complete DNA sugar-phosphate-sugar (SPS) backbone model system truncated to prevent undesired intramolecular interactions. The calculations are then compared with other QM methods. The BLYP and TPSS functionals supplemented with Grimme's D3(BJ) dispersion term provide the best tradeoff between computational demands and accuracy and can be recommended for preliminary conformational searches as well as calculations on large model systems. Among the tested methods, the best agreement with the benchmark database has been obtained for the double-hybrid DSD-BLYP functional in combination with a quadruple-ζ basis set, which is, however, computationally very demanding. The new hybrid density functionals PW6B95-D3 and MPW1B95-D3 yield outstanding results and even slightly outperform the computationally more demanding PWPB95 double-hybrid functional. B3LYP-D3 is somewhat less accurate compared to the other hybrids. Extrapolated MP2(D,T) calculations are not as accurate as the less demanding DFT-D3 methods. Preliminary force field tests using several charge sets reveal an almost order of magnitude larger deviations from the reference QM data compared to modern DFT-D3, underlining the challenges facing force field simulations of nucleic acids. As expected, inclusion of the solvent environment approximated by a continuum approach has a large impact on the relative stabilities of different backbone substates and is important when comparing the QM data with structural bioinformatics and other experimental data.
机译:DNA糖磷酸骨架对DNA结构动力学有重大影响。结构生物学和生物信息学研究表明,实验结构中的DNA骨架对各种不同的构象亚状态进行采样,这被称为旋转异构体DNA骨架构象家族。它们的正确描述对于用于建模核酸的方法至关重要,并且被称为力场计算的致命弱点。在这项研究中,我们报告了MP2计算的基准数据库,该数据库外推到具有aug-cc-pVTZ和aug-cc-pVQZ基集MP2(T,Q)的原子轨道的完整基集,并通过ACCSD(T)/ aug增强-cc-pVDZ更正。计算是在气相中以及使用COSMO溶剂模型进行的。这项研究包括一整套完整的18个已建立的,生物化学上最重要的DNA骨架构象家族,以及我们在实验结构中确定的其他几个显着构象家族。我们利用截短的电子足够完整的DNA糖-磷酸-糖(SPS)骨架模型系统,以防止发生不希望的分子内相互作用。然后将计算结果与其他质量管理方法进行比较。补充了Grimme的D3(BJ)色散项的BLYP和TPSS功能在计算需求和准确性之间提供了最佳折衷,可以建议用于初步构象搜索以及大型模型系统的计算。在经过测试的方法中,对于双混合DSD-BLYP功能与四倍ζ基集的组合,已经获得了与基准数据库的最佳一致性,但是,这在计算上非常苛刻。新的混合密度功能模块PW6B95-D3和MPW1B95-D3产生了出色的结果,甚至略胜于对计算要求更高的PWPB95双混合功能。与其他杂种相比,B3LYP-D3的准确性有所降低。外推MP2(D,T)计算不如要求不高的DFT-D3方法那么准确。与现代DFT-D3相比,使用多个电荷组进行的初步力场测试显示与标准QM数据相比,偏差几乎大一个数量级,这突显了核酸力场模拟所面临的挑战。不出所料,通过连续介质方法近似的溶剂环境的包含对不同骨架亚状态的相对稳定性有很大影响,并且在将QM数据与结构生物信息学和其他实验数据进行比较时很重要。

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