Self-assembly of DNA into Nanoscale Three-dimensional Shapes
Affiliations
Molecular self-assembly offers a 'bottom-up' route to fabrication with subnanometre precision of complex structures from simple components. DNA has proved to be a versatile building block for programmable construction of such objects, including two-dimensional crystals, nanotubes, and three-dimensional wireframe nanopolyhedra. Templated self-assembly of DNA into custom two-dimensional shapes on the megadalton scale has been demonstrated previously with a multiple-kilobase 'scaffold strand' that is folded into a flat array of antiparallel helices by interactions with hundreds of oligonucleotide 'staple strands'. Here we extend this method to building custom three-dimensional shapes formed as pleated layers of helices constrained to a honeycomb lattice. We demonstrate the design and assembly of nanostructures approximating six shapes-monolith, square nut, railed bridge, genie bottle, stacked cross, slotted cross-with precisely controlled dimensions ranging from 10 to 100 nm. We also show hierarchical assembly of structures such as homomultimeric linear tracks and heterotrimeric wireframe icosahedra. Proper assembly requires week-long folding times and calibrated monovalent and divalent cation concentrations. We anticipate that our strategy for self-assembling custom three-dimensional shapes will provide a general route to the manufacture of sophisticated devices bearing features on the nanometre scale.
Nucleic Acid Framework-Enabled Spatial Organization for Biological Applications.
Zhang R, Zuo X, Yin F Chem Bio Eng. 2025; 2(2):71-86.
PMID: 40041004 PMC: 11873853. DOI: 10.1021/cbe.4c00164.
DNA-Based Nanostructured Platforms as Drug Delivery Systems.
Kumar M, Jha A, Mishra B Chem Bio Eng. 2025; 1(3):179-198.
PMID: 39974200 PMC: 11835166. DOI: 10.1021/cbe.3c00023.
General theory for packing icosahedral shells into multi-component aggregates.
Canestrari N, Nelli D, Ferrando R Nat Commun. 2025; 16(1):1655.
PMID: 39952960 PMC: 11828912. DOI: 10.1038/s41467-025-56952-1.
Tinsley L, Karipoth P, Chandler J, Taccola S, Valdastri P, Harris R Small. 2025; 21(6):e2408822.
PMID: 39937524 PMC: 11817948. DOI: 10.1002/smll.202408822.
Ghamari S, Chiarelli G, Kolataj K, Subramanian S, Acuna G, Vollmer F Nanophotonics. 2025; 14(2):253-262.
PMID: 39927203 PMC: 11806501. DOI: 10.1515/nanoph-2024-0560.