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Folding DNA to create nanoscale shapes and patterns

机译:折叠DNA以创建纳米级形状和图案

摘要

‘Bottom-up fabrication’, which exploits the intrinsic properties of atoms and molecules to direct their self-organization, is widely used to make relatively simple nanostructures. A key goal for this approach is to create nanostructures of high complexity, matching that routinely achieved by ‘top-down’ methods. The self-assembly of DNA molecules provides an attractive route towards this goal. Here I describe a simple method for folding long, single-stranded DNA molecules into arbitrary two-dimensional shapes. The design for a desired shape is made by raster-filling the shape with a 7-kilobase single-stranded scaffold and by choosing over 200 short oligonucleotide ‘staple strands’ to hold the scaffold in place. Once synthesized and mixed, the staple and scaffold strands self-assemble in a single step. The resulting DNA structures are roughly 100 nm in diameter and approximate desired shapes such as squares, disks and five-pointed stars with a spatial resolution of 6 nm. Because each oligonucleotide can serve as a 6-nm pixel, the structures can be programmed to bear complex patterns such as words and images on their surfaces. Finally, individual DNA structures can be programmed to form larger assemblies, including extended periodic lattices and a hexamer of triangles (which constitutes a 30-megadalton molecular complex).
机译:“自下而上的制造”利用原子和分子的固有特性来指导其自组织,被广泛用于制造相对简单的纳米结构。此方法的主要目标是创建高复杂度的纳米结构,以匹配通常通过“自上而下”方法实现的纳米结构。 DNA分子的自组装为实现该目标提供了一条有吸引力的途径。在这里,我描述了一种将长的单链DNA分子折叠成任意二维形状的简单方法。所需形状的设计是通过用7公斤碱基长的单链支架进行栅格填充,然后选择200多个短寡核苷酸“主链”将支架固定在适当位置来完成的。合成并混合后,短链和脚手架线可在单个步骤中自组装。所得的DNA结构的直径大约为100 nm,并且具有所需的近似形状,例如正方形,圆盘和五点星状,其空间分辨率为6 nm。因为每个寡核苷酸都可以用作6 nm像素,所以可以对结构进行编程,使其表面带有复杂的图案,例如文字和图像。最后,可以对单个DNA结构进行编程以形成更大的组件,包括扩展的周期性晶格和三角形的六聚体(构成30兆达尔顿分子的复合物)。

著录项

  • 作者

    Rothemund Paul W. K.;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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