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首页> 外文期刊>ACS Synthetic Biology >Complex DNA Nanostructures from Oligonucleotide Ensembles
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Complex DNA Nanostructures from Oligonucleotide Ensembles

机译:寡核苷酸集合体的复杂DNA纳米结构。

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摘要

The first synthetic DNA nanostructures were created by self-assembly of a small number of oligonucleotides. Introduction of the DNA origami method provided a new paradigm for designing and creating two- and three-dimensional DNA nanostructures by folding a large single-stranded DNA and 'stapling' it together with a library of oligonucleotides. Despite its power and wide-ranging implementation, the DNA origami technique suffers from some limitations. Foremost among these is the limited number of useful single-stranded scaffolds of biological origin. This report describes a new approach to creating large DNA nanostructures exclusively from synthetic oligonucleotides. The essence of this approach is to replace the single-stranded scaffold in DNA origami with a library of oligonucleotides termed "scaples" (scaffold staples). Scaples eliminate the need for scaffolds of biological origin and create new opportunities for producing larger and more diverse DNA nanostructures as well as simultaneous assembly of distinct structures in a "single-pot" reaction.
机译:通过少量寡核苷酸的自组装产生了第一个合成的DNA纳米结构。 DNA折纸方法的引入为设计和创建二维和三维DNA纳米结构提供了新的范式,方法是折叠大的单链DNA并与寡核苷酸文库一起“装订”。尽管DNA折纸技术功能强大且实现范围广泛,但仍存在一些局限性。其中最重要的是生物学来源的有用单链支架数量有限。该报告介绍了一种仅由合成寡核苷酸产生大型DNA纳米结构的新方法。这种方法的本质是用称为“ scaples”的寡核苷酸文库(支架钉书钉)代替DNA折纸中的单链支架。肩cap骨消除了对生物来源支架的需求,并为生产更大和更多样化的DNA纳米结构以及在“单罐”反应中同时组装不同结构创造了新机会。

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