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用纳米结构帽终止 DNA 瓦片组装。

Terminating DNA Tile Assembly with Nanostructured Caps.

机构信息

Chemical and Biomolecular Engineering, Johns Hopkins University , Baltimore, Maryland 21218, United States.

Computer Science, Johns Hopkins University , Baltimore, Maryland 21218, United States.

出版信息

ACS Nano. 2017 Oct 24;11(10):9770-9779. doi: 10.1021/acsnano.7b02256. Epub 2017 Sep 18.

Abstract

Precise control over the nucleation, growth, and termination of self-assembly processes is a fundamental tool for controlling product yield and assembly dynamics. Mechanisms for altering these processes programmatically could allow the use of simple components to self-assemble complex final products or to design processes allowing for dynamic assembly or reconfiguration. Here we use DNA tile self-assembly to develop general design principles for building complexes that can bind to a growing biomolecular assembly and terminate its growth by systematically characterizing how different DNA origami nanostructures interact with the growing ends of DNA tile nanotubes. We find that nanostructures that present binding interfaces for all of the binding sites on a growing facet can bind selectively to growing ends and stop growth when these interfaces are presented on either a rigid or floppy scaffold. In contrast, nucleation of nanotubes requires the presentation of binding sites in an arrangement that matches the shape of the structure's facet. As a result, it is possible to build nanostructures that can terminate the growth of existing nanotubes but cannot nucleate a new structure. The resulting design principles for constructing structures that direct nucleation and termination of the growth of one-dimensional nanostructures can also serve as a starting point for programmatically directing two- and three-dimensional crystallization processes using nanostructure design.

摘要

精确控制自组装过程的成核、生长和终止是控制产物收率和组装动力学的基本工具。通过编程改变这些过程的机制,可以使用简单的组件来自组装复杂的最终产品,或者设计允许动态组装或重构的过程。在这里,我们使用 DNA 瓦片自组装来开发构建复合物的一般设计原则,这些复合物可以与生长中的生物分子组装结合,并通过系统地表征不同的 DNA 折纸纳米结构与 DNA 瓦片纳米管的生长末端的相互作用来终止其生长。我们发现,呈现出与生长面所有结合位点结合界面的纳米结构可以选择性地结合到生长末端,并在这些界面呈现于刚性或柔性支架上时停止生长。相比之下,纳米管的成核需要呈现与结构面形状匹配的结合位点排列。因此,可以构建能够终止现有纳米管生长但不能引发新结构的纳米结构。这些用于构建一维纳米结构生长的成核和终止的结构的设计原则,也可以作为使用纳米结构设计编程指导二维和三维结晶过程的起点。

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