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Acidic-Basic Properties of Three Alanine-Based Peptides Containing Acidic and Basic Side Chains: Comparison Between Theory and Experiment

机译:三种含酸性和碱性侧链的丙氨酸基肽的酸性-碱性性质:理论与实验的比较

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摘要

The purpose of this work was to evaluate the effect of the nature of the ionizable end groups, and the solvent, on their acid-base properties in alanine-based peptides. Hence, the acid-base properties of three alanine-based peptides: Ac-KK-(A)7-KK-NH2 (KAK), Ac-OO-(A)7-DD-NH2 (OAD), Ac-KK-(A)7-EE-NH2 (KAE), where A, D, E, K, and O denote alanine, aspartic acid, glutamic acid, lysine, and ornithine, respectively, were determined in water and in methanol by potentiometry. With the availability of these data, the ability of two theoretical methods to simulate pH-metric titration of those peptides was assessed: (i) the electrostatically driven Monte Carlo method with the ECEPP/3 force field and the Poisson-Boltzmann approach to compute solvation energy (EDMC/PB/pH), and (ii) the molecular dynamics method with the AMBER force field and the Generalized Born model (MD/GB/pH). For OAD and KAE, pKa1 and pKa2 correspond to the acidic side chains. For all three compounds in both solvents, the pKa1 value is remarkably lower than the pKa of a compound modeling the respective isolated side chain, which can be explained by the influence of the electrostatic field from positively charged ornithine or lysine side chains. The experimental titration curves are reproduced well by the MD/GB/pH approach, the agreement being better if restraints derived from NMR measurements are incorporated in the conformational search. Poorer agreement is achieved by the EDMC/PB/pH method.
机译:这项工作的目的是评估可电离的端基和溶剂的性质对其在基于丙氨酸的肽中的酸碱性质的影响。因此,三种基于丙氨酸的肽的酸碱性质:Ac-KK-(A)7-KK-NH2(KAK),Ac-OO-(A)7-DD-NH2(OAD),Ac-KK- (A)7-EE-NH2(KAE),其中A,D,E,K和O分别表示丙氨酸,天冬氨酸,谷氨酸,赖氨酸和鸟氨酸,分别通过电位计在水中和甲醇中测定。利用这些数据,评估了两种理论方法模拟这些肽的pH滴定法的能力:(i)静电驱动的带有ECEPP / 3力场的蒙特卡罗方法和Poisson-Boltzmann方法来计算溶剂化(EDMC / PB / pH),以及(ii)具有AMBER力场和广义Born模型(MD / GB / pH)的分子动力学方法。对于OAD和KAE,pKa1和pKa2对应于酸性侧链。对于两种溶剂中的所有三种化合物,pKa1值均显着低于模拟各自分离的侧链的化合物的pKa,这可由带正电荷的鸟氨酸或赖氨酸侧链的静电场的影响来解释。通过MD / GB / pH方法可以很好地再现实验滴定曲线,如果将来自NMR测量的限制条件纳入构象搜索中,则一致性会更好。通过EDMC / PB / pH方法可实现较差的一致性。

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