Meta-DNA structures
Meta-DNA structures
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元 DNA 结构
DOI:
10.1038/s41557-020-0539-8
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发表时间:
2020
期刊:
影响因子:
21.8
通讯作者:
Yan Hao
中科院分区:
文献类型:
--
作者:
Yao Guangbao;Zhang Fei;Wang Fei;Peng Tianhuan;Liu Hao;Poppleton Erik;Sulc Petr;Jiang Shuoxing;Liu Lan;Gong Chen;Jing Xinxin;Liu Xiaoguo;Wang Lihua;Liu Yan;Fan Chunhai;Yan Hao
DNA origami has emerged as a highly programmable method to construct customized objects and functional devices in the 10–100 nm scale. Scaling up the size of the DNA origami would enable many potential applications, which include metamaterial construction and surface-based biophysical assays. Here we demonstrate that a six-helix bundle DNA origami nanostructure in the submicrometre scale (meta-DNA) could be used as a magnified analogue of single-stranded DNA, and that two meta-DNAs that contain complementary ‘meta-base pairs’ can form double helices with programmed handedness and helical pitches. By mimicking the molecular behaviours of DNA strands and their assembly strategies, we used meta-DNA building blocks to form diverse and complex structures on the micrometre scale. Using meta-DNA building blocks, we constructed a series of DNA architectures on a submicrometre-to-micrometre scale, which include meta-multi-arm junctions, three-dimensional (3D) polyhedrons, and various 2D/3D lattices. We also demonstrated a hierarchical strand-displacement reaction on meta-DNA to transfer the dynamic features of DNA into the meta-DNA. This meta-DNA self-assembly concept may transform the microscopic world of structural DNA nanotechnology.