Šebesta Filip, Sovová Žofie, Burda Jaroslav V
Department of Chemical Physics and Optics, Faculty of Mathematics and Physics, Charles University, Ke Karlovu 3, 121 16 Prague 2, Czech Republic.
J Phys Chem B. 2024 Feb 22;128(7):1627-1637. doi: 10.1021/acs.jpcb.3c07007. Epub 2024 Feb 12.
Protonation states of molecules significantly influence the thermodynamics and kinetics of chemical reactions. This is especially important in biochemical processes, where appropriate protonation states of amino acids control the exo/endoergicity of practically all biochemical cycles. This paper is focused on appraisal of the impact of DFT functionals and PCM solvation models on the accuracy of p evaluations for all proteinogenic amino acids. Eight functionals (B3LYP, PBE0, revPBE0, M06-2X, M11, M11-L, TPSSh, and ωB97X-D) and four basis sets are considered, together with four kinds of implicit solvation models when additional attention is paid to a cavity construction. An influence of nonelectrostatic contributions and Wertz's corrections on Gibbs free energy is investigated together with accuracy of provided proton solvation energy. The best model is based on the M06-2/6-311++G**/D-PCM/UAKS computational level. The fitting procedure is utilized to improve the accuracy of the evaluated models. All of these results are also compared with values obtained from the COSMOtherm program and CCSD(T) calculations. Results for cysteine and histidine are discussed individually, as they can be found in different protonation states at neutral pH.
分子的质子化状态对化学反应的热力学和动力学有显著影响。这在生物化学过程中尤为重要,因为氨基酸的适当质子化状态控制着几乎所有生物化学循环的放能/吸能情况。本文重点评估密度泛函理论(DFT)泛函和极化连续介质模型(PCM)溶剂化模型对所有蛋白质ogenic氨基酸p值评估准确性的影响。考虑了八种泛函(B3LYP、PBE0、revPBE0、M06 - 2X、M11、M11 - L、TPSSh和ωB97X - D)和四种基组,以及在特别关注空穴构建时的四种隐式溶剂化模型。研究了非静电贡献和韦茨校正对吉布斯自由能的影响以及所提供质子溶剂化能的准确性。最佳模型基于M06 - 2/6 - 311++G**/D - PCM/UAKS计算水平。使用拟合程序提高评估模型的准确性。所有这些结果还与从COSMOtherm程序和CCSD(T)计算获得的值进行了比较。分别讨论了半胱氨酸和组氨酸的结果,因为它们在中性pH下可以处于不同的质子化状态。