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Self-Assembly of Phenylalanine Oligopeptides: Insights from Experiments and Simulations

机译:苯丙氨酸寡肽的自组装:来自实验和模拟的见解。

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摘要

Studies of peptide-based nanostructures provide general insights into biomolecular self-assembly and can lead material engineering toward technological applications. The diphenylalanine peptide (FF) self-assembles into discrete, hollow, well ordered nanotubes, and its derivatives form nanoassemblies of various morphologies. Here we demonstrate for the first time, to our knowledge, the formation of planar nanostructures with β-sheet content by the triphenylalanine peptide (FFF). We characterize these structures using various microscopy and spectroscopy techniques. We also obtain insights into the interactions and structural properties of the FF and FFF nanostructures by 0.4-μs, implicit-solvent, replica-exchange, molecular-dynamics simulations of aqueous FF and FFF solutions. In the simulations the peptides form aggregates, which often contain open or ring-like peptide networks, as well as elementary and network-containing structures with β-sheet characteristics. The networks are stabilized by polar and nonpolar interactions, and by the surrounding aggregate. In particular, the charged termini of neighbor peptides are involved in hydrogen-bonding interactions and their aromatic side chains form “T-shaped” contacts, as in three-dimensional FF crystals. These interactions may assist the FF and FFF self-assembly at the early stage, and may also stabilize the mature nanostructures. The FFF peptides have higher network propensities and increased aggregate stabilities with respect to FF, which can be interpreted energetically.
机译:基于肽的纳米结构的研究提供了生物分子自组装的一般见解,并且可以将材料工程引向技术应用。二苯丙氨酸肽(FF)自组装成离散的,中空的,有序的纳米管,其衍生物形成各种形态的纳米组件。在此,据我们所知,这是首次证明三苯丙氨酸肽(FFF)形成具有β-折叠含量的平面纳米结构。我们使用各种显微镜和光谱技术表征这些结构。我们还通过0.4μs,FF和FFF水溶液的隐式溶剂,复制交换,分子动力学模拟获得了关于FF和FFF纳米结构的相互作用和结构性质的见解。在模拟中,肽形成聚集体,其通常包含开放或环状的肽网络,以及具有β-折叠特征的基本和含网络结构。网络通过极性和非极性相互作用以及周围的聚集体得以稳定。尤其是,与三​​维FF晶体一样,邻居肽的带电荷末端也参与氢键相互作用,并且它们的芳香族侧链形成“ T形”接触。这些相互作用可以在早期帮助FF和FFF自组装,也可以稳定成熟的纳米结构。 FFF肽相对于FF具有更高的网络倾向性和更高的聚集稳定性,这可以用能量来解释。

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