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Avoiding gas-phase calculations in theoretical pK a predictions

机译:在理论pK a 预测中避免气相计算

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CBS-QB3, two simplified and less computationally demanding versions of CBS-QB3, DFT-B3LYP, and HF quantum chemistry methods have been used in conjunction with the CPCM continuum solvent model to calculate the free energies of proton exchange reactions in water solution following an isodesmic reaction approach. According to our results, the precision of the predicted pK a values when compared to experiment is equivalent to that of the thermodynamic cycles that combine gas-phase and solution-phase calculations. However, in the aqueous isodesmic reaction schema, the accuracy of the results is less sensitive to the presence of explicit water molecules and to the global charges of the involved species since the free energies of solvation are not required. In addition, this procedure makes easier the prediction of pK a values for molecules that undergo large conformational changes in solvation process and makes possible the pK a prediction of unstable species in gas-phase such as some zwitterionic tautomers. The successive pK a values of few amino acids corresponding to the ionization of the α-carboxylic acid and α-amine groups, which is one of the problematic cases for thermodynamic cycles, were successfully calculated by employing the aqueous isodesmic reaction yielding mean absolute deviations of 0.22 and 0.19 pK a units for the first and second ionization processes, respectively.
机译:CBS-QB3,CBS-QB3,DFT-B3LYP和HF量子化学方法的两个简化且对计算要求不高的版本已与CPCM连续介质溶剂模型结合使用,以计算水溶液中质子交换反应的自由能。等电势反应方法。根据我们的结果,与实验相比,预测的pK a 值的精度等于结合了气相和溶液相计算的热力学循环的精度。但是,在水等电势反应方案中,由于不需要溶剂化的自由能,结果的准确性对显式水分子的存在和所涉及物质的整体电荷不太敏感。另外,该程序使溶剂化过程中经历较大构象变化的分子的pK a 值的预测更容易,并且使气相中不稳定物种(例如两性离子互变异构体)的pK a 预测成为可能。 。通过水等电渗析反应,成功地计算出与热力学循环存在问题的情况之一的α-羧酸和α-胺基电离对应的少数氨基酸的连续pK a 值。第一和第二个电离过程的平均绝对偏差分别为0.22和0.19 pK a

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