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首页> 外文期刊>ACS nano >Programmed Two-Dimensional Self-Assembly of Multiple DNA Origami Jigsaw Pieces
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Programmed Two-Dimensional Self-Assembly of Multiple DNA Origami Jigsaw Pieces

机译:多个DNA折纸拼图碎片的程序化二维自组装

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摘要

We demonstrate a novel strategy of self-assembly to scale up origami structures in two-dimensional (2D) space using multiple origami structures, named “2D DNA jigsaw pieces”, with a specially designed shape. For execution of 2D self-assembly along the helical axis (horizontal direction), sequence-programmed tenon and mortise were introduced to promote selective connections via π-stacking interaction, sequence-complementarity, and shape-complementarity. For 2D self-assembly along the helical side (vertical direction), the jigsaw shape-complementarity in the top and bottom edges and the sequence-complementarity of single-stranded overhangs were used. We designed and prepared nine different jigsaw pieces and tried to obtain a 3 × 3 assembly. The proof of concept was obtained by performing the assembly in four different ways. Among them, the stepwise self-assembly from the three vertical trimer assemblies gave the target 2D assembly with ~35% yield. Finally, the surfaces of jigsaw pieces were decorated with hairpin DNAs to display the letters of the alphabet, and the self-assembled 2D structure displayed the word “DNA JIG SAW” in nanoscale. The method can be expanded to create self-assembled modules carrying various functional molecules for practical applications.
机译:我们演示了一种新的自组装策略,可以使用多个折纸结构(称为“ 2D DNA拼图碎片”)以特殊设计的形状来放大二维(2D)空间中的折纸结构。为了执行沿螺旋轴(水平方向)的2D自组装,引入了序列编程的榫眼和榫眼,以通过π堆积相互作用,序列互补性和形状互补性促进选择性连接。对于沿螺旋边(垂直方向)的2D自组装,使用了顶部和底部边缘的拼图形状互补性以及单链突出端的序列互补性。我们设计并准备了九种不同的拼图碎片,并尝试获得3×3的组合件。通过以四种不同方式进行组装获得了概念证明。其中,通过三个垂直三聚体组件的逐步自组装,目标2D组件的产率约为35%。最后,在拼图碎片的表面上装饰有发夹DNA,以显示字母;自组装的2D结构以纳米级显示了“ DNA JIG SAW”字样。可以扩展该方法以创建带有各种功能分子的自组装模块,以用于实际应用。

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