首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Water Adsorption at Two Unsolvated Peptides with a Protonated Lysine Residue: From Self-Solvation to Solvation
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Water Adsorption at Two Unsolvated Peptides with a Protonated Lysine Residue: From Self-Solvation to Solvation

机译:带有质子化赖氨酸残基的两个未溶剂化肽的水吸附:从自溶剂化到溶剂化

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We study the initial steps of the interaction of water molecules with two unsolvated peptides: Ac-Alas-LysH~+ and Ac-Ala8-LysH~+. Each peptide has two primary candidate sites for water adsorption near the C-terminus: a protonated carboxyl group and the protonated ammonium group of LysH~+, which is fully hydrogen-bonded (self-solvated) in the absence of water. Earlier experimental studies have shown that H2O adsorbs readily at Ac-Ala5-LysH~+ (a non-helical peptide) but with a much lower propensity at Ac-Ala8-LysH~+ (a helix) under the same conditions. The helical conformation of Ac-Ala8-LysH~+ has been suggested as the origin of the different behavior. We here use first-principles conformational searches (all-electron density functional theory based on a van der Waals corrected version of the PBE functional, PBE+vdW) to study the microsolvation of Ac-Ala5-LysH~+ with one to five water molecules and the monohydration of Ac-Ala8-LysH~+. In both cases, the most favorable water adsorption sites break intramolecular hydrogen bonds associated with the ammonium group, in contrast to earlier suggestions in the literature. A simple thermodynamic model yields Gibbs free energies AG?T) and equilibrium constants in agreement with experiments. A qualitative change of the first adsorption site does not occur. For few water molecules, we do not consider carboxyl deprotonation or finite-temperature dynamics, but in a liquid solvent, both effects would be important. Exploratory ab initio molecular dynamics simulations illustrate the short-time effects of a droplet of 152 water molecules on the initial unsolvated conformation, including the deprotonation of the carboxyl group. The self-solvation of the ammonium group by intramolecular hydrogen bonds is lifted in favor of a solvation by water.
机译:我们研究了水分子与两种未溶解的肽:Ac-Alas-LysH〜+和Ac-Ala8-LysH〜+相互作用的初始步骤。每个肽在C端附近都有两个主要的水吸附候选位点:一个质子化的羧基和LysH〜+的质子化铵基,在不存在水的情况下它是完全氢键的(自溶的)。较早的实验研究表明,在相同条件下,H2O容易吸附在Ac-Ala5-LysH〜+(一种非螺旋肽)上,但在Ac-Ala8-LysH〜+(一种螺旋)上的吸附倾向要低得多。 Ac-Ala8-LysH〜+的螺旋构象被认为是不同行为的起源。我们在这里使用第一性原理构象搜索(基于范德华校正的PBE官能团的全电子密度泛函理论,PBE + vdW)研究Ac-Ala5-LysH〜+与1-5个水分子的微溶剂化和Ac-Ala8-LysH〜+的一元水合。在这两种情况下,最有利的水吸附位点都会破坏与铵基团相关的分子内氢键,这与文献中先前的建议相反。一个简单的热力学模型可以产生吉布斯自由能(AG?T)和平衡常数,与实验一致。第一吸附位点不会发生质的变化。对于很少的水分子,我们不考虑羧基去质子化或有限温度动力学,但在液体溶剂中,这两种作用都很重要。探索性的从头算分子动力学模拟说明了152个水分子液滴对初始未溶剂化构象(包括羧基的去质子化)的短期影响。铵基团通过分子内氢键的自溶剂化被提升,有利于水的溶剂化。

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