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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Molecular Dynamics Simulations of Adsorption of Amino Acid Side Chain Analogues and a Titanium Binding Peptide on the TiO2 (100) Surface
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Molecular Dynamics Simulations of Adsorption of Amino Acid Side Chain Analogues and a Titanium Binding Peptide on the TiO2 (100) Surface

机译:氨基酸侧链类似物吸附的分子动力学模拟和TiO2(100)表面上的钛结合肽

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摘要

Adsorption profiles and adsorption free energies were determined for the side chain analogues of the 20 naturally occurring amino acids and a titanium binding peptide on the TiO2 (100) surface. Microsecond simulations with umbrella sampling and metadynamics were used to sample the free energy barriers associated with desolvation of strongly bound water molecules at the TiO2 surface. Polar and aromatic side chain analogues that hydrogen bond either to surface waters or directly to the metal oxide surface were found to be the strongest binders. Further, adsorption simulations of a 6 residue titanium binding peptide identified two binding modes on TiO2 (100). The peptide structure with lowest free energy was shown to be stabilized by a salt bridge between the end termini. A comparison between the free energies of the side chain analogues of the peptide sequence and the peptide itself shows that the free energy contributions are not additive. The simulations emphasize that tightly bound surface waters play a key role for peptide and protein structures when bound to inorganic surfaces in biological environments.
机译:对TiO 2(100)表面上的20天然氨基酸的侧链类似物和钛结合肽的侧链类似物测定吸附曲线和吸附能量。使用伞形采样和元动力学的微秒模拟用于对TiO 2表面进行强烈的水分子的脱溶解相关的自由能屏障。发现与表面水或直接到金属氧化物表面的氢键的极性和芳族侧链类似物是最强的粘合剂。此外,6个残留钛结合肽的吸附模拟鉴定了TiO 2(100)上的两种结合模式。显示具有最低自由能量的肽结构被末端末端之间的盐桥稳定。肽序列的侧链类似物的自由能与肽本身的比较表明自由能贡献不是添加剂。模拟强调,紧密的表面水域在生物环境中与无机表面结合时对肽和蛋白质结构起着关键作用。

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