CAS OpenIR  > 中科院上海应用物理研究所2011-2019年
Self-assembly of DNA Origami Using Rolling Circle Amplification Based DNA Nanoribbons
Liu, B; Ouyang, XY; Chao, J; Liu, HJ; Zhao, Y; Fan, CH; zhaoyun@scu.edu.cn; fchh@sinap.ac.cn
2014
Source PublicationCHINESE JOURNAL OF CHEMISTRY
ISSN1001-604X
Volume32Issue:2Pages:137—141
AbstractDuring the development of structural DNA nanotechnology, the emerging of scaffolded DNA origami is marvelous. It utilizes DNA double helix inherent specificity of Watson-Crick base pairing and structural features to create self-assembling structures at the nanometer scale exhibiting the addressable character. However, the assembly of DNA origami is disorderly and unpredictable. Herein, we present a novel strategy to assemble the DNA origami using rolling circle amplification based DNA nanoribbons as the linkers. Firstly, long single-stranded DNA from Rolling Circle Amplification is annealed with several staples to form kinds of DNA nanoribbons with overhangs. Subsequently, the rectangle origami is formed with overhanged staple strands at any edge that would hybridize with the DNA nanoribbons. By mixing them up, we illustrate the one-dimensional even two-dimensional assembly of DNA origami with good orientation.
KeywordNanoscale Shapes Folding Dna Arrays
Indexed BySCI
Language英语
WOS IDWOS:000332004000005
Citation statistics
Cited Times:14[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.sinap.ac.cn/handle/331007/14378
Collection中科院上海应用物理研究所2011-2019年
Corresponding Authorzhaoyun@scu.edu.cn; fchh@sinap.ac.cn
Recommended Citation
GB/T 7714
Liu, B,Ouyang, XY,Chao, J,et al. Self-assembly of DNA Origami Using Rolling Circle Amplification Based DNA Nanoribbons[J]. CHINESE JOURNAL OF CHEMISTRY,2014,32(2):137—141.
APA Liu, B.,Ouyang, XY.,Chao, J.,Liu, HJ.,Zhao, Y.,...&fchh@sinap.ac.cn.(2014).Self-assembly of DNA Origami Using Rolling Circle Amplification Based DNA Nanoribbons.CHINESE JOURNAL OF CHEMISTRY,32(2),137—141.
MLA Liu, B,et al."Self-assembly of DNA Origami Using Rolling Circle Amplification Based DNA Nanoribbons".CHINESE JOURNAL OF CHEMISTRY 32.2(2014):137—141.
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