Laboratoire des Mécanismes Réactionnels, Ecole Polytechnique, 91128 Palaiseau cedex, France.
Phys Chem Chem Phys. 2013 Apr 28;15(16):6097-106. doi: 10.1039/c3cp00043e. Epub 2013 Mar 15.
Extensive exploration of the conformational space of neutral, protonated and deprotonated histidine has been conducted at the G4MP2 level. Theoretical protonation and deprotonation thermochemistry as well as heats of formation of gaseous histidine and its ionized forms have been calculated at the G4 level considering either the most stable conformers or an equilibrium population of conformers at 298 K. These theoretical results were compared to evaluated experimental determinations. Recommended proton affinity and protonation entropy deduced from these comparisons are PA(His) = 980 kJ mol(-1) and ΔpS(His) ∼ 0 J mol(-1) K(-1), thus leading to a gas-phase basicity value of GB(His) = 947.5 kJ mol(-1). Similarly, gas phase acidity parameters are ΔacidH(o)(His) = 1373 kJ mol(-1), ΔacidS(His) ∼ 10 J mol(-1) K(-1) and ΔacidG(o)(His) = 1343 kJ mol(-1). Computed G4 heats of formation values are equal to -290, 265 and -451 kJ mol(-1) for gaseous neutral histidine and its protonated and deprotonated forms, respectively. The present computational data correct, and complete, previous thermochemical parameter estimates proposed for gas-phase histidine and its acido-basic properties.
已在 G4MP2 水平上对中性、质子化和去质子化组氨酸的构象空间进行了广泛探索。在 G4 水平上,考虑最稳定构象或 298 K 时构象的平衡分布,计算了气态组氨酸及其离子形式的理论质子化和去质子化热化学以及生成热。将这些理论结果与评估的实验测定值进行了比较。从这些比较中推断出的推荐质子亲和力和质子化熵为 PA(His) = 980 kJ mol(-1) 和 ΔpS(His) ∼ 0 J mol(-1) K(-1),从而导致气相碱度值 GB(His) = 947.5 kJ mol(-1)。同样,气相酸度参数为 ΔacidH(o)(His) = 1373 kJ mol(-1),ΔacidS(His) ∼ 10 J mol(-1) K(-1)和 ΔacidG(o)(His) = 1343 kJ mol(-1)。计算的 G4 生成热值分别为-290、265 和-451 kJ mol(-1),对应于气态中性组氨酸及其质子化和去质子化形式。本计算数据纠正并完善了先前提出的气相组氨酸及其酸碱性质的热化学参数估计。