Rapid Chiral Assembly of Rigid DNA Building Blocks for Molecular Nanofabrication

Practical components for three-dimensional molecular nanofabrication must be simple to produce, stereopure, rigid, and adaptable. We report a family of DNA tetrahedra, less than 10 nanometers on a side, that can self-assemble in seconds with near-quantitative yield of one diastereomer. They can be c...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2005-12, Vol.310 (5754), p.1661-1665
Hauptverfasser: Goodman, R. P, Schaap, I. A. T, Tardin, C. F, Erben, C. M, Berry, R. M, Schmidt, C. F, Turberfield, A. J
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Sprache:eng
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Zusammenfassung:Practical components for three-dimensional molecular nanofabrication must be simple to produce, stereopure, rigid, and adaptable. We report a family of DNA tetrahedra, less than 10 nanometers on a side, that can self-assemble in seconds with near-quantitative yield of one diastereomer. They can be connected by programmable DNA linkers. Their triangulated architecture confers structural stability; by compressing a DNA tetrahedron with an atomic force microscope, we have measured the axial compressibility of DNA and observed the buckling of the double helix under high loads.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.1120367