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基于 DNA 拼图的可编程组装系统。

Programmed-assembly system using DNA jigsaw pieces.

机构信息

Institute for Integrated Cell-Material Sciences (iCeMS), Kyoto University, Yoshida-ushinomiyacho, Sakyo-ku, Kyoto 606-8501, Japan.

出版信息

Chemistry. 2010 May 10;16(18):5362-8. doi: 10.1002/chem.200903057.

Abstract

A novel method for assembling multiple DNA origami structures has been developed by using designed 2D DNA origami rectangles, so-called "DNA jigsaw pieces" that have sequence-programmed connectors. Shape and sequence complementarity were introduced to the concavity and convex connectors in the DNA rectangles for selective connection with the help of nonselective pi-stacking interactions between the side edges of the DNA jigsaw piece structures. Single DNA jigsaw piece units were assembled into unidirectional nanostructures with the correct alignment and uniform orientation. Three and five different DNA jigsaw pieces were assembled into predesigned and ordered nanostructures in a programmed fashion. Finally, three-, four-, and five-letter words have been displayed by using this programmed DNA jigsaw piece system.

摘要

一种新的方法被开发用于组装多个 DNA 折纸结构,通过使用设计的二维 DNA 折纸矩形,所谓的“DNA 拼图块”,具有序列编程的连接器。通过 DNA 矩形的凹面和凸面连接器引入形状和序列互补性,在非选择性的π堆积相互作用的帮助下,与 DNA 拼图块结构的侧边缘选择性连接。单个 DNA 拼图块单元被组装成具有正确对准和均匀取向的单向纳米结构。三个和五个不同的 DNA 拼图块以编程的方式组装成预定的和有序的纳米结构。最后,使用这个编程的 DNA 拼图块系统显示了三、四、五个字母的单词。

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