首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Conformational Equilibria of Terminally Blocked Single Amino Acids at the Water-Hexane Interface. A Molecular Dynamics Study
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Conformational Equilibria of Terminally Blocked Single Amino Acids at the Water-Hexane Interface. A Molecular Dynamics Study

机译:水-己烷界面上末端封闭的单个氨基酸的构象平衡。分子动力学研究

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摘要

The conformational equilibria of the acetyl and methyl amide terminally blocked L-alanine, L-leucine and L-glutamine amino acids are examined in vacuum, in bulk water, and at the water-hexane interface, using multi-nanosecond molecular dynamics simulations. The two-dimensional probability distribution functions of finding the peptides at different dihedral angles of the backbone, φ and ψ, are calculated, and free energy differences between different conformational states are determined. All three peptides are interfacially active, i.e. tend to accumulate at the interface even though they are not amphiphilic. Conformational states stable in both gas phase and water are also stable in the interracial environment. Their populations, however, cannot be simply predicted from the knowledge of conformational equilibria in the bulk phases, indicating that the interface exerts a unique effect on the peptides. Conformational preferences in the interracial environment arise from the interplay between electrostatic and hydrophobic effects. As in an aqueous solution, electrostatic solute-solvent interactions lead to the stabilization of more polar peptide conformations. The hydrophobic effect is manifested at the interface by a tendency to segregate polar and nonpolar moieties of the solute into the aqueous and the hexane phases, respectively. For the terminally blocked glutamine, this favors conformations for which such a segregation is compatible with the formation of strong, backbone-side chain intramolecular hydrogen bonds on the hexane side of the interface. The influence of the hydrophobic effect can be also noted in the orientational preferences of the peptides at the interface. The terminally blocked leucine is oriented such that its nonpolar side chain is buried in hexane, whereas the polar side chain of glutamine is immersed in water. The free energies of rotating the peptides along the axis parallel to the interface by more than 90℃ are substantial. This indicates that peptide folding at interfaces is strongly driven by the tendency to adopt amphiphilic structures.
机译:使用多纳秒分子动力学模拟,在真空中,在散装水中和在水-己烷界面上检查乙酰基和甲基酰胺末端封闭的L-丙氨酸,L-亮氨酸和L-谷氨酰胺氨基酸的构象平衡。计算在主链的不同二面角φ和ψ处找到肽的二维概率分布函数,并确定不同构象状态之间的自由能差。所有这三种肽都具有界面活性,即即使它们不是两亲的,也倾向于在界面处积聚。在气相和水中都稳定的构象态在异族环境中也很稳定。然而,不能从本体相中的构象平衡知识简单地预测其种群,这表明该界面对肽发挥了独特的作用。异族环境中的构象偏好来自静电和疏水效应之间的相互作用。如在水溶液中一样,静电溶质与溶剂的相互作用导致更多极性肽构象的稳定。通过将溶质的极性和非极性部分分别分离成水相和己烷相的趋势,在界面处表现出疏水作用。对于末端封闭的谷氨酰胺,这有利于这样的构象,对于这种构象,这种分离与在界面的己烷侧上形成强的,骨架侧链的分子内氢键是相容的。疏水作用的影响还可以在界面处的肽的取向偏好中注意到。末端封闭的亮氨酸的取向应使其非极性侧链埋在己烷中,而谷氨酰胺的极性侧链浸入水中。沿着平行于界面的轴旋转肽的自由能大于90℃。这表明在界面处的肽折叠受到采用两亲结构的趋势的强烈驱动。

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