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通过固-气相法自组装 Arg-Phe 纳米结构。

Self-assembly of Arg-Phe nanostructures via the solid-vapor phase method.

机构信息

Centro de Ciências Naturais e Humanas, Universidade Federal do ABC, 09210-170 Santo André, SP, Brazil.

出版信息

J Phys Chem B. 2013 Jan 24;117(3):733-40. doi: 10.1021/jp307716y. Epub 2013 Jan 14.

DOI:10.1021/jp307716y
PMID:23286315
Abstract

We report for the first time on the self-assembly of nanostructures composed exclusively of alternating positively charged and hydrophobic amino acids. A novel arginine/phenylalanine octapeptide, RF8, was synthesized. Because the low hydrophobicity of this sequence makes its spontaneous ordering through solution-based methods difficult, a recently proposed solid-vapor approach was used to obtain nanometric architectures on ITO/PET substrates. The formation of the nanostructures was investigated under different preparation conditions, specifically, under different gas-phase solvents (aniline, water, and dichloromethane), different peptide concentrations in the precursor solution, and different incubation times. The stability of the assemblies was experimentally studied by electron microscopy and thermogravimetric analysis coupled with mass spectrometry. The secondary structure was assessed by infrared and Raman spectroscopy, and the arrays were found to assume an antiparallel β-sheet conformation. FEG-SEM images clearly reveal the appearance of fibrillar structures that form extensive homogeneously distributed networks. A close relationship between the morphology and preparation parameters was found, and a concentration-triggered mechanism was suggested. Molecular dynamics simulations were performed to address the thermal stability and nature of intermolecular interactions of the putative assembly structure. Results obtained when water is considered as solvent shows that a stable lamellar structure is formed containing a thin layer of water in between the RF8 peptides that is stabilized by H-bonding.

摘要

我们首次报道了仅由带正电荷和疏水性氨基酸交替组成的纳米结构的自组装。合成了一种新型的精氨酸/苯丙氨酸八肽 RF8。由于该序列的低疏水性使得通过基于溶液的方法难以自发有序排列,因此采用了最近提出的固-气相方法在 ITO/PET 基底上获得纳米级结构。在不同的制备条件下研究了纳米结构的形成,特别是在不同的气相溶剂(苯胺、水和二氯甲烷)、前体溶液中不同的肽浓度以及不同的孵育时间下。通过电子显微镜和热重分析与质谱联用实验研究了组装体的稳定性。通过红外和拉曼光谱评估了二级结构,发现该阵列呈反平行β-折叠构象。FEG-SEM 图像清楚地揭示了形成广泛均匀分布网络的纤维状结构的出现。发现形态与制备参数之间存在密切关系,并提出了浓度触发机制。进行分子动力学模拟以解决假定组装结构的热稳定性和分子间相互作用的性质。当将水视为溶剂时获得的结果表明,形成了稳定的层状结构,其中在 RF8 肽之间存在一层薄的水,该水通过氢键稳定。

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