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首页> 外文期刊>ACS nano >Spontaneous Structural Transition in Phospholipid-Inspired Aromatic Phosphopeptide Nanostructures
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Spontaneous Structural Transition in Phospholipid-Inspired Aromatic Phosphopeptide Nanostructures

机译:磷脂启发的芳香磷酸肽纳米结构中的自发结构转变。

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Phospholipid membranes could be considered a prime example of the ability of nature to produce complex yet ordered structures, by spontaneous and efficient self-assembly. Inspired by the unique properties and architecture of phospholipids, we designed simple amphiphilic decapeptides, intended to fold in the center of the peptide sequence, with a phosphorylated serine "head" located within a central turn segment, and two hydrophobic "tails". The molecular design also included the integration of the diphenylalanine motif, previously shown to facilitate self-assembly and increase nanostructure stability. Secondary structure analysis of the peptides indeed indicated the presence of stabilized conformations in solution, with a central turn connecting two hydrophobic "tails", and interactions between the hydrophobic strands. The mechanisms of assembly into supramolecular structures involved structural transitions between different morphologies, which occurred over several hours, leading to the formation of distinctive nanostructures, including half-elliptical nanosheets and curved tapes. The phosphopeptide building blocks appear to self-assemble via a particular combination of aromatic, hydrophobic and ionic interactions, as well as hydrogen bonding, as demonstrated by proposed constructed simulated models of the peptides and self-assembled nanostructures. Molecular dynamics simulations also gave insight into mechanisms of structural transitions of the nanostructures at a molecular level. Because of the biocompatibility of peptides, the phosphopeptide assemblies allow for expansion of the library of biomolecular nanostructures available for future design and application of biomedical devices.
机译:通过自发和有效的自组装,磷脂膜可以认为是自然产生复杂而有序结构的能力的主要示例。受磷脂独特性质和结构的启发,我们设计了简单的两亲性十肽,旨在折叠在肽序列的中心,磷酸化的丝氨酸“头部”位于中央转向片段内,并带有两个疏水性“尾巴”。分子设计还包括二苯丙氨酸基序的整合,先前已证明可促进自组装并增加纳米结构的稳定性。肽的二级结构分析确实表明溶液中存在稳定的构象,连接两个疏水性“尾部”的中心转向以及疏水性链之间的相互作用。组装成超分子结构的机制涉及不同形态之间的结构转变,这种转变历时数小时,导致形成独特的纳米结构,包括半椭圆形纳米片和弯曲带。磷酸肽结构单元似乎是通过芳香,疏水和离子相互作用以及氢键的特定组合而自组装的,正如拟议中构建的肽和自组装纳米结构的模拟模型所证明的那样。分子动力学模拟还深入了解了纳米结构在分子水平上的结构转变机理。由于肽的生物相容性,磷酸肽组件允许扩展生物分子纳米结构的文库,该文库可用于未来的生物医学设备设计和应用。

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