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Self-Assembly Effects of Cyclic Peptide Dimers: Molecular Modeling Study

机译:环肽二聚体的自组装效应:分子建模研究

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The cyclic peptides can self-assemble into β-sheet like antiparallel tubular ensembles through intermolecuiar hydrogen-bonding interaction. Under the self-assembling effects of the dirtier subunits, various aggregate properties may alter with the change of the structure. The relationship between the property and structure of ensembles is extremely important for designing new nanostructures. Molecular mechanics (MM) and molecular dynamics (MD) were employed to investigate the structure and property of single dimer and dimer-ensemble from cyclo-[D-Phe-(1R, 3S)-γ-Acc]3. Results reveal that the single dimer cannot adsorb CHCl3 molecule into its cavity, while the two-dimer ensemble can do. It suggests that the self-assembled cyclic peptide nanotube from the dimer-ensemble may act as the transport channel of CHCl3 molecules.
机译:环状肽可以通过分子间氢键相互作用自组装成β-折叠,就像反平行管状集合一样。在较脏的亚基的自组装作用下,各种聚集体性质可能会随着结构的变化而改变。集成体的性质和结构之间的关系对于设计新的纳米结构非常重要。利用分子力学(MM)和分子动力学(MD)研究了环-[D-Phe-(1R,3S)-γ-Acc] 3的单二聚体和二聚体的结构和性质。结果表明,单个二聚体不能将CHCl3分子吸收到其腔中,而两个二聚体则可以。这表明来自二聚体的自组装环状肽纳米管可能是CHCl3分子的转运通道。

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