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DNA origami frame filled with two types of single-stranded tiles

机译:充满了两种类型的DNA折纸帧单股的瓷砖

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DNA origami and DNA single-stranded tiles (SSTs) are two basic motifs that are widely used in fabricating DNA nanostructures. Typically, DNA origami is self-folded via a long single phage strand (scaffold strand) and this process is aided by a myriad of short oligonucleotides (staple strand). Unlike DNA origami, SSTs construct nanostructures using many unique strands connected with each other to obtain specific shapes. These motifs are material- and labour-consuming, and require multiple different synthetic oligonucleotides, and DNA SSTs tend to remain kinetically trapped in the form of tubes. In this study, we present a new strategy that combines DNA origami with DNA SSTs to construct a DNA nanostructure with a predesigned shape. A rectangular DNA origami frame with ten dozen helper strands was filled with two types of SSTs assembled repeatedly, which avoided the kinetic trap and used fewer synthetic oligonucleotides. The assembly results were identified using atomic force microscopy. The experimental analysis demonstrated the stability and feasibility of the strategy.
机译:DNA折纸和DNA单链瓷砖(太平洋)是广泛使用的两个基本主题制造DNA纳米结构。折纸长self-folded通过单一的噬菌体链(脚手架链)和这一过程由于大量的短的寡核苷酸使用许多独特的构造纳米结构链相互连接来获取特定的形状。labour-consuming,需要多个不同合成寡核苷酸和DNA太平洋倾向依然被困在管的形式活动。在这项研究中,我们提出一个新的策略结合DNA和DNA太平洋构造一个折纸DNA纳米结构与一个预先设计的形状。矩形DNA折纸框架10打辅助线充满了两种类型的太平洋反复组装,避免了动能陷阱和使用更少的人工合成的寡核苷酸。使用原子组装结果确定力显微镜。的稳定性和可行性策略。

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