首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Molecular Dynamics Study of Surfactin Monolayer at the Air/Water Interface
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Molecular Dynamics Study of Surfactin Monolayer at the Air/Water Interface

机译:表面肌动蛋白单层在空气/水界面的分子动力学研究

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The surface parameter of protonated surfactin molecules and the structural properties of the protonated surfactin monolayer adsorbed at the air/water interface have been studied by molecular dynamics simulation. The simulation was performed at 293 K and the interfacial concentration of surfactin was set in a range of 0.70-2.20 nm molecule~(-1) . The results show that the interfacial concentration greatly affects the molecular orientation of surfactin, the structure of the peptide ring backbone and the spatial arrangement of the surfactin monolayer. The peptide ring backbone of the surfactin molecule exhibits a structural flexibility, and a more packed structureis adopted at higher interfacial concentration. The hydrophobic contacts between surfactin molecules and the stability of the secondary structures, β-turn structure in Leu2 → AspS and the β-sheet domains, are enhanced when the surfactin molecules are in a very packed situation.
机译:通过分子动力学模拟研究了质子化表面活性素分子的表面参数和质子化表面活性素单层吸附在空气/水界面的结构性质。模拟在293 K下进行,表面活性素的界面浓度设定在0.70-2.20 nm分子〜(-1)的范围内。结果表明界面浓度极大地影响表面活性素的分子取向,肽环骨架的结构和表面活性素单层的空间排列。表面活性素分子的肽环骨架显示出结构柔性,并且在较高的界面浓度下采用了更堆积的结构。当表面活性素分子处于非常堆积的状态时,表面活性素分子之间的疏水接触以及二级结构的稳定性,即Leu2→AspS和β-折叠结构域的β-转角结构,都得到了增强。

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