Three-dimensional structures self-assembled from DNA bricks.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 23197527.
- Also identified by DOI 10.1126/science.1227268 and PMC identifier 3843647.
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Abstract
We describe a simple and robust method to construct complex three-dimensional (3D) structures by using short synthetic DNA strands that we call "DNA bricks." In one-step annealing reactions, bricks with hundreds of distinct sequences self-assemble into prescribed 3D shapes. Each 32-nucleotide brick is a modular component; it binds to four local neighbors and can be removed or added independently. Each 8-base pair interaction between bricks defines a voxel with dimensions of 2.5 by 2.5 by 2.7 nanometers, and a master brick collection defines a "molecular canvas" with dimensions of 10 by 10 by 10 voxels. By selecting subsets of bricks from this canvas, we constructed a panel of 102 distinct shapes exhibiting sophisticated surface features, as well as intricate interior cavities and tunnels.
Medical subject headings
- Base Pairing
- DNA, Single-Stranded
- DNA, Single-Stranded/chemical synthesis
- DNA, Single-Stranded/chemistry
- Models, Chemical
- Nanostructures
- Nanostructures/chemistry
- Nanotechnology
- Nanotechnology/methods
- Nucleotides
- Nucleotides/chemistry