首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Assessment of Two Theoretical Methods to Estimate Potentiometric Titration Curves of Peptides:Comparison with Experiment
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Assessment of Two Theoretical Methods to Estimate Potentiometric Titration Curves of Peptides:Comparison with Experiment

机译:估算肽电位滴定曲线的两种理论方法的评估:与实验的比较

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摘要

We compared the ability of two theoretical methods of pH-dependent conformational calculations to reproduce experimental potentiometric titration curves of two models of peptides:Ac-K_5-NHMe in 95% methanol (MeOH)/5% water mixture and Ac-XX(A)_7OO-NH_2 (XAO) (where X is diaminobutyric acid,A is alanine,and O is ornithine) in water,methanol (MeOH),and dimethyl sulfoxide (DMSO),respectively.The titration curve of the former was taken from the literature,and the curve of the latter was determined in this work.The first theoretical method involves a conformational search using the electrostatically driven Monte Carlo (EDMC) method with a low-cost energy function (ECEPP/3 plus the SRFOPT surface-solvation model,assumming that all titratable groups are uncharged) and subsequent reevaluation of the free energy at a given pH with the Poisson-Boltzmann equation,considering variable protonation states.In the second procedure,molecular dynamics (MD) simulations are run with the AMBER force field and the generalized Born model of electrostatic solvation,and the protonation states are sampled during constant-pH MD runs.In all three solvents,the first pK_a of XAO is strongly downshifted compared to the value for the reference compounds (ethylamine and propylamine,respectively);the water and methanol curves have one,and the DMSO curve has two jumps characteristic of remarkable differences in the dissociation constants of acidic groups.The predicted titration curves of Ac-K_5-NHMe are in good agreement with the experimental ones;better agreement is achieved with the MD-based method.The titration curves of XAO in methanol and DMSO,calculated using the MD-based approach,trace the shape of the experimental curves,reproducing the pH jump,while those calculated with the EDMC-based approach and the titration curve in water calculated using the MD-based approach have smooth shapes characteristic of the titration of weak multifunctional acids with small differences between the dissociation constants.Nevertheless,quantitative agreement between theoretically predicted and experimental titration curves is not achieved in all three solvents even with the MD-based approach,which is manifested by a smaller pH range of the calculated titration curves with respect to the experimental curves.The poorer agreement obtained for water than for the nonaqueous solvents suggests a significant role of specific solvation in water,which cannot be accounted for by the mean-field solvation models.
机译:我们比较了两种理论上依赖于pH的构象计算方法的能力,以重现两种肽模型的实验电位滴定曲线:在95%甲醇(MeOH)/ 5%水混合物和Ac-XX(A)中的Ac-K_5-NHMe _7OO-NH_2(XAO)(其中X为二氨基丁酸,A为丙氨酸,O为鸟氨酸)分别在水,甲醇(MeOH)和二甲基亚砜(DMSO)中的溶液。第一种理论方法是使用具有低成本能量函数(ECEPP / 3加上SRFOPT表面溶解模型的静电驱动蒙特卡洛(EDMC)方法进行构象搜索,假设所有可滴定基团均不带电荷),然后使用泊松-玻耳兹曼方程(考虑质子化状态)重新评估给定pH下的自由能。第二种方法是使用AMBER力场进行分子动力学(MD)模拟以及在恒定pH MD运行期间采样的广义Born模型的静电溶剂化和质子化状态。在所有三种溶剂中,XAO的第一个pK_a与参考化合物(分别为乙胺和丙胺)的值相比均大幅降低。 ;水和甲醇曲线有一个,而DMSO曲线有两个跳跃的特征,酸性基团的解离常数有显着差异。Ac-K_5-NHMe的预测滴定曲线与实验曲线吻合得更好;更一致的是用MD法计算XAO在甲醇和DMSO中的滴定曲线,描绘实验曲线的形状,再现pH值的跳跃,而用EDMC法计算pH的曲线。使用基于MD的方法计算的水中滴定曲线具有平滑的形状,可滴定弱的多功能酸,解离之间的差异很小但是,即使使用基于MD的方法,在所有三种溶剂中也无法实现理论上预测的滴定曲线与实验滴定曲线之间的定量一致性,这表现为所计算的滴定曲线的pH范围相对于实验曲线较小。与非水溶剂相比,水获得的一致性表明,特定溶剂化在水中起着重要作用,这不能用平均场溶剂化模型来解释。

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