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Folding Double-Stranded DNA into Designed Shapes with Triplex-Forming Oligonucleotides

Adv Mater .. 2023-06; 
Cindy Ng , Anirban Samanta , Ole Aalund Mandrup , Emily Tsang , Sarah Youssef , Lasse Hyldgaard Klausen , Mingdong Dong , Minke A D Nijenhuis , Kurt V Gothelf
Products/Services Used Details Operation
DNA Sequencing The scaffold sequences were synthesized by GenScript (GenScript, The Netherlands) according to specific designs (described above). /The synthesized scaffold sequences were ligated into an ampicillin resistance pUC57 plasmid and delivered by GenScript. Get A Quote

摘要

The compaction and organization of genomic DNA is a central mechanism in eukaryotic cells, but engineered architectural control over double-stranded DNA (dsDNA) is notably challenging. Here, long dsDNA templates are folded into designed shapes via triplex-mediated self-assembly. Triplex-forming oligonucleotides (TFOs) bind purines in dsDNA via normal or reverse Hoogsteen interactions. In the triplex origami methodology, these non-canonical interactions are programmed to compact dsDNA (linear or plasmid) into well-defined objects, which demonstrate a variety of structural features: hollow and raster-filled, single- and multi-layered, with custom curvatures and geometries, and featuring lattice-free, square-, or ... More

关键词

DNA nanotechnology; Hoogsteen; origami; self-assembly; triplex.