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具有不同交叉/缺口设计的二维 DNA 折纸的菱形纳米结构和力学性能。

Rhombic-Shaped Nanostructures and Mechanical Properties of 2D DNA Origami Constructed with Different Crossover/Nick Designs.

机构信息

Department of Micro Engineering, Kyoto University, Kyoto, 615-8540, Japan.

Department of Electronic Science and Engineering, Kyoto University, Kyoto, 615-8540, Japan.

出版信息

Small. 2018 Jan;14(1). doi: 10.1002/smll.201702028. Epub 2017 Nov 13.

Abstract

DNA origami methods enable the fabrication of various nanostructures and nanodevices, but their effective use depends on an understanding of their structural and mechanical properties and the effects of basic structural features. Frequency-modulation atomic force microscopy is introduced to directly characterize, in aqueous solution, the crossover regions of sets of 2D DNA origami based on different crossover/nick designs. Rhombic-shaped nanostructures formed under the influence of flexible crossovers placed between DNA helices are observed in DNA origami incorporating crossovers every 3, 4, or 6 DNA turns. The bending rigidity of crossovers is determined to be only one-third of that of the DNA helix, based on interhelical electrostatic forces reported elsewhere, and the measured pitches of the 3-turn crossover design rhombic-shaped nanostructures undergoing negligible bending. To evaluate the robustness of their structural integrity, they are intentionally and simultaneously stressed using force-controlled atomic force microscopy. DNA crossovers are verified to have a stabilizing effect on the structural robustness, while the nicks have an opposite effect. The structural and mechanical properties of DNA origami and the effects of crossovers and nicks revealed in this paper can provide information essential for the design of versatile DNA origami structures that exhibit specified and desirable properties.

摘要

DNA 折纸方法可用于制造各种纳米结构和纳米器件,但要有效利用这些方法,需要了解其结构和力学性能以及基本结构特征的影响。本文引入频率调制原子力显微镜,直接在水溶液中对基于不同交叉/缺口设计的二维 DNA 折纸的交叉区域进行特征化。在 DNA 螺旋之间放置柔性交叉点的影响下,形成了菱形纳米结构,在交叉点每 3、4 或 6 个 DNA 转处都有 DNA 折纸。基于其他地方报道的螺旋内静电相互作用力,交叉点的弯曲刚度仅为 DNA 螺旋的三分之一,测量了经历可忽略弯曲的 3 转交叉设计菱形纳米结构的节距。为了评估其结构完整性的稳健性,使用力控制原子力显微镜对其进行有意且同时的施压。实验验证了 DNA 交叉点对结构稳健性具有稳定作用,而缺口则具有相反的作用。本文揭示的 DNA 折纸的结构和力学性能以及交叉点和缺口的影响,可以为设计具有指定和理想性能的多功能 DNA 折纸结构提供重要信息。

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