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Single-Stranded DNA and RNA Origami

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2017-12-15

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American Association for the Advancement of Science (AAAS)
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Han, Dongran, Xiaodong Qi, Cameron Myhrvold, Bei Wang, Mingjie Dai, Shuoxing Jiang, Maxwell Bates et al. "Single-Stranded DNA and RNA Origami." Science 358, no. 6369 (2017): eaao2648. DOI: 10.1126/science.aao2648

Abstract

Self-folding of an information-carrying polymer into a defined structure is foundational to biology and offers attractive potential as a synthetic strategy. Although multicomponent self-assembly has produced complex synthetic nanostructures, unimolecular folding has seen limited progress. We describe a framework to design and synthesize a single DNA or RNA strand to self-fold into a complex yet unknotted structure that approximates an arbitrary user-prescribed shape. We experimentally construct diverse multikilobase single-stranded structures, including a ~10,000-nucleotide (nt) DNA structure and a ~6000-nt RNA structure. We demonstrate facile replication of the strand in vitro and in living cells. The work here thus establishes unimolecular folding as a general strategy for constructing complex and replicable nucleic acid nanostructures, and expands the design space and material scalability for bottom-up nanotechnology.

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Research Subject Categories::NATURAL SCIENCES::Biology::Cell and molecular biology::Genetics

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