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金属诱导过氧化物酶的自组装作为一种将超小金纳米粒子分拣成一维团簇的工具。

Metal-induced self-assembly of peroxiredoxin as a tool for sorting ultrasmall gold nanoparticles into one-dimensional clusters.

机构信息

Dept. of Life, Health and Environmental Sciences, University of L'Aquila, Piazzale Salvatore Tommasi 1, 67100 L'Aquila, Italy.

出版信息

Nanoscale. 2014 Jul 21;6(14):8052-61. doi: 10.1039/c4nr01526f.

Abstract

Nanomanipulation of matter to create responsive, ordered materials still remains extremely challenging. Supramolecular chemistry has inspired new strategies by which such nanomaterials can be synthesized step by step by exploiting the self-recognition properties of molecules. In this work, the ring-shaped architecture of the 2-Cys peroxiredoxin I protein from Schistosoma mansoni, engineered to have metal ion-binding sites, is used as a template to build up 1D nanoscopic structures through metal-induced self-assembly. Chromatographic and microscopic analyses demonstrate the ability of the protein rings to stack directionally upon interaction with divalent metal ions and form well-defined nanotubes by exploiting the intrinsic recognition properties of the ring surfaces. Taking advantage of such behavior, the rings are then used to capture colloidal Ni(2+)-functionalized ultrasmall gold nanoparticles and arrange them into 1D arrays through stacking into peapod-like complexes. Finally, as the formation of such nano-peapods strictly depends on nanoparticle dimensions, the peroxiredoxin template is used as a colloidal cut-off device to sort by size the encapsulated nanoparticles. These results open up possibilities in developing Prx-based methods to synthesize new advanced functional materials.

摘要

对物质进行纳米操纵以创造具有响应性和有序性的材料仍然极具挑战性。超分子化学通过利用分子的自识别特性,为逐步合成此类纳米材料提供了新的策略。在这项工作中,曼氏血吸虫 2-Cys 过氧化物酶 I 蛋白的环形结构被设计成具有金属离子结合位点,用作模板,通过金属诱导的自组装构建一维纳米结构。色谱和显微镜分析表明,蛋白环在与二价金属离子相互作用时能够定向堆积,并通过利用环表面的固有识别特性形成定义良好的纳米管。利用这种行为,然后将环用于捕获胶体 Ni(2+)-功能化的超小金纳米粒子,并通过堆叠成豆荚状复合物将它们排列成一维阵列。最后,由于这种纳米豆荚的形成严格依赖于纳米粒子的尺寸,因此过氧化物酶模板被用作胶体截止装置,根据尺寸对封装的纳米粒子进行分类。这些结果为开发基于 Prx 的方法来合成新型先进功能材料开辟了可能性。

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