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Single-Molecule Analysis Using DNA Origami

机译:使用DNA折纸进行单分子分析

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摘要

Uuring the last two decades, scientists have developed various methods that allow the detection and manipulation of single molecules, which have also been called "in singulo" approaches. Fundamental understanding of biochemical reactions, folding of biomolecules, and the screening of drugs were achieved by using these methods. Single-molecule analysis was also performed in the field of DNA nano-technology, mainly by using atomic force microscopy. However, until recently, the approaches used commonly in nanotechnology adopted structures with a dimension of 10-20 nm, which is not suitable for many applications. The recent development of scaffolded DNA origami by Rothemund made it possible for the construction of larger defined assemblies. One of the most salient features of the origami method is the precise addressability of the structures formed: Each staple can serve as an attachment point for different kinds of nano-objects. Thus, the method is suitable for the precise positioning of various functionalities and for the single-molecule analysis of many chemical and biochemical processes. Here we summarize recent progress in the area of single-molecule analysis using DNA origami and discuss the future directions of this research.
机译:在过去的二十年中,科学家们开发了多种方法来检测和操纵单个分子,这些方法也被称为“单一”方法。通过使用这些方法,可以从根本上了解生化反应,生物分子折叠和药物筛选。在DNA纳米技术领域,也主要通过使用原子力显微镜进行了单分子分析。但是,直到最近,纳米技术中常用的方法仍采用尺寸为10-20 nm的结构,因此不适用于许多应用。 Rothemund对支架式DNA折纸的最新开发使建造更大的装配体成为可能。折纸方法最显着的特征之一就是所形成结构的精确可寻址性:每个钉书钉都可以充当不同种类的纳米物体的附着点。因此,该方法适用于各种功能的精确定位以及许多化学和生化过程的单分子分析。在这里,我们总结了使用DNA折纸的单分子分析领域的最新进展,并讨论了该研究的未来方向。

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