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参考有机分子的构象能:常见高效计算方法与耦合簇理论的基准比较。

Conformational energies of reference organic molecules: benchmarking of common efficient computational methods against coupled cluster theory.

机构信息

Department of Medicinal Chemistry, Faculty of Pharmacy, National and Kapodistrian University of Athens, Panepistimioupolis Zografou, 15771, Athens, Greece.

Department of Chemistry, National Changhua University of Education, Changhua City, Taiwan.

出版信息

J Comput Aided Mol Des. 2023 Dec;37(12):607-656. doi: 10.1007/s10822-023-00513-5. Epub 2023 Aug 19.

Abstract

We selected 145 reference organic molecules that include model fragments used in computer-aided drug design. We calculated 158 conformational energies and barriers using force fields, with wide applicability in commercial and free softwares and extensive application on the calculation of conformational energies of organic molecules, e.g. the UFF and DREIDING force fields, the Allinger's force fields MM3-96, MM3-00, MM4-8, the MM2-91 clones MMX and MM+, the MMFF94 force field, MM4, ab initio Hartree-Fock (HF) theory with different basis sets, the standard density functional theory B3LYP, the second-order post-HF MP2 theory and the Domain-based Local Pair Natural Orbital Coupled Cluster DLPNO-CCSD(T) theory, with the latter used for accurate reference values. The data set of the organic molecules includes hydrocarbons, haloalkanes, conjugated compounds, and oxygen-, nitrogen-, phosphorus- and sulphur-containing compounds. We reviewed in detail the conformational aspects of these model organic molecules providing the current understanding of the steric and electronic factors that determine the stability of low energy conformers and the literature including previous experimental observations and calculated findings. While progress on the computer hardware allows the calculations of thousands of conformations for later use in drug design projects, this study is an update from previous classical studies that used, as reference values, experimental ones using a variety of methods and different environments. The lowest mean error against the DLPNO-CCSD(T) reference was calculated for MP2 (0.35 kcal mol), followed by B3LYP (0.69 kcal mol) and the HF theories (0.81-1.0 kcal mol). As regards the force fields, the lowest errors were observed for the Allinger's force fields MM3-00 (1.28 kcal mol), ΜΜ3-96 (1.40 kcal mol) and the Halgren's MMFF94 force field (1.30 kcal mol) and then for the MM2-91 clones MMX (1.77 kcal mol) and MM+ (2.01 kcal mol) and MM4 (2.05 kcal mol). The DREIDING (3.63 kcal mol) and UFF (3.77 kcal mol) force fields have the lowest performance. These model organic molecules we used are often present as fragments in drug-like molecules. The values calculated using DLPNO-CCSD(T) make up a valuable data set for further comparisons and for improved force field parameterization.

摘要

我们选择了 145 种参考有机分子,其中包括用于计算机辅助药物设计的模型片段。我们使用力场计算了 158 种构象能和势垒,这些力场在商业和免费软件中有广泛的适用性,并广泛应用于有机分子构象能的计算,例如 UFF 和 Dreiding 力场、Allinger 的 MM3-96、MM3-00、MM4-8、MM2-91 克隆 MMX 和 MM+、MMFF94 力场、MM4、从头算 Hartree-Fock(HF)理论与不同的基组、标准密度泛函理论 B3LYP、二阶后 HF MP2 理论和基于域的局部对自然轨道耦合簇 DLPNO-CCSD(T)理论,后者用于准确的参考值。有机分子数据集包括烃类、卤代烷烃、共轭化合物以及含氧、氮、磷和硫的化合物。我们详细回顾了这些模型有机分子的构象方面,提供了当前对决定低能量构象稳定性的立体和电子因素的理解,并包括了以前的实验观察和计算结果。虽然计算机硬件的进步允许为以后的药物设计项目计算数千种构象,但这项研究是对以前经典研究的更新,以前的经典研究使用各种方法和不同环境的实验值作为参考值。与 DLPNO-CCSD(T)参考值相比,MP2(0.35 kcal mol)的平均误差最小,其次是 B3LYP(0.69 kcal mol)和 HF 理论(0.81-1.0 kcal mol)。至于力场,Allinger 的 MM3-00(1.28 kcal mol)、MM3-96(1.40 kcal mol)和 Halgren 的 MMFF94 力场(1.30 kcal mol)的误差最低,然后是 MM2-91 克隆 MMX(1.77 kcal mol)和 MM+(2.01 kcal mol)和 MM4(2.05 kcal mol)。Dreiding(3.63 kcal mol)和 UFF(3.77 kcal mol)力场的性能最低。我们使用的这些模型有机分子通常作为类似药物的分子中的片段存在。使用 DLPNO-CCSD(T)计算的值构成了一个有价值的数据集,可用于进一步比较和改进力场参数化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80c3/10618395/491c614d0ac6/10822_2023_513_Fig1_HTML.jpg

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