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基于二氧化硅和聚合物基底上的明确定义图案的自上而下组装烟草花叶病毒衍生核蛋白管的新方法。

New approaches for bottom-up assembly of tobacco mosaic virus-derived nucleoprotein tubes on defined patterns on silica- and polymer-based substrates.

机构信息

Institute of Functional Interfaces (IFG), Karlsruhe Institute of Technology, Eggenstein-Leopoldshafen, Germany.

出版信息

Langmuir. 2012 Oct 23;28(42):14867-77. doi: 10.1021/la302774h. Epub 2012 Oct 8.

DOI:10.1021/la302774h
PMID:22950722
Abstract

The capability of some natural molecular building blocks to self-organize into defined supramolecular architectures is a versatile tool for nanotechnological applications. Their site-selective integration into a technical context, however, still poses a major challenge. RNA-directed self-assembly of tobacco mosaic virus-derived coat protein on immobilized RNA scaffolds presents a possibility to grow nucleoprotein nanotubes in place. Two new methods for their site-selective, bottom-up assembly are introduced. For this purpose, isothiocyanate alkoxysilane was used to activate oxidic surfaces for the covalent immobilization of DNA oligomers, which served as linkers for assembly-directing RNA. Patterned silanization of surfaces was achieved (1) on oxidic surfaces via dip-pen nanolithography and (2) on polymer surfaces (poly(dimethylsiloxane)) via selective oxidization by UV-light irradiation in air. Atomic force microscopy and X-ray photoelectron spectroscopy were used to characterize the surfaces. It is shown for the first time that the combination of the mentioned structuring methods and the isothiocyanate-based chemistry is appropriate (1) for the site-selective immobilization of nucleic acids and, thus, (2) for the formation of viral nanoparticles by bottom-up self-assembly after adding the corresponding coat proteins.

摘要

一些天然分子构建基元能够自组装成特定的超分子结构,这是纳米技术应用的一种多功能工具。然而,将它们有选择地整合到技术环境中仍然是一个主要的挑战。在固定的 RNA 支架上,烟草花叶病毒衍生的外壳蛋白的 RNA 指导的自组装为在原位生长核蛋白纳米管提供了可能性。本文介绍了两种用于其有选择的、自下而上组装的新方法。为此,异硫氰酸酯烷氧基硅烷被用于激活氧化表面,以共价固定 DNA 寡聚物,这些寡聚物作为组装导向 RNA 的接头。通过(1)在氧化表面上通过蘸笔纳米光刻术和(2)在聚合物表面(聚二甲基硅氧烷)上通过在空气中用紫外光照射进行选择性氧化,实现了表面的图案化硅烷化。原子力显微镜和 X 射线光电子能谱用于对表面进行表征。本文首次表明,所提到的结构方法与基于异硫氰酸酯的化学的组合适用于(1)核酸的有选择的固定化,并且(2)在添加相应的外壳蛋白后通过自下而上的自组装形成病毒纳米颗粒。

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