We use oxDNA, a coarse-grained model of DNA at the nucleotide level, to simulate large nanoprisms that are composed of multi-arm star tiles, in which the size of bulge loops that have been incorporated into the tile design is used to control the flexibility of the tiles. The oxDNA model predicts equilibrium structures for several different nanoprism designs that are in excellent agreement with the experimental structures as measured by cryoTEM. In particular we reproduce the chiral twisting of the top and bottom faces of the nanoprisms, as the bulge sizes in these structures are varied due to the greater flexibility of larger bulges. We are also able to follow how the properties of the star tiles evolve as the prisms are assembled. Individu...
Advances in DNA nanotechnology have stimulated the search for simple motifs that can be used to cont...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
We use oxDNA, a coarse-grained model of DNA at the nucleotide level, to simulate large nanoprisms th...
We use oxDNA, a coarse-grained model of DNA at the nucleotide level, to simulate large nanoprisms th...
We use oxDNA, a coarse-grained model of DNA at the nucleotide level, to simulate large nanoprisms th...
We use oxDNA, a coarse-grained model of DNA at the nucleotide level, to simulate large nanoprisms th...
We use oxDNA, a coarse-grained model of DNA at the nucleotide level, to simulate large nanoprisms th...
We use oxDNA, a coarse-grained model of DNA at the nucleotide level, to simulate large nanoprisms th...
We use oxDNA, a coarse-grained model of DNA at the nucleotide level, to simulate large nanoprisms th...
Advances in DNA nanotechnology have stimulated the search for simple motifs that can be used to cont...
Advances in DNA nanotechnology have stimulated the search for simple motifs that can be used to cont...
© 2015 AIP Publishing LLC.Advances in DNA nanotechnology have stimulated the search for simple motif...
Advances in DNA nanotechnology have stimulated the search for simple motifs that can be used to cont...
Advances in DNA nanotechnology have stimulated the search for simple motifs that can be used to cont...
Advances in DNA nanotechnology have stimulated the search for simple motifs that can be used to cont...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
We use oxDNA, a coarse-grained model of DNA at the nucleotide level, to simulate large nanoprisms th...
We use oxDNA, a coarse-grained model of DNA at the nucleotide level, to simulate large nanoprisms th...
We use oxDNA, a coarse-grained model of DNA at the nucleotide level, to simulate large nanoprisms th...
We use oxDNA, a coarse-grained model of DNA at the nucleotide level, to simulate large nanoprisms th...
We use oxDNA, a coarse-grained model of DNA at the nucleotide level, to simulate large nanoprisms th...
We use oxDNA, a coarse-grained model of DNA at the nucleotide level, to simulate large nanoprisms th...
We use oxDNA, a coarse-grained model of DNA at the nucleotide level, to simulate large nanoprisms th...
Advances in DNA nanotechnology have stimulated the search for simple motifs that can be used to cont...
Advances in DNA nanotechnology have stimulated the search for simple motifs that can be used to cont...
© 2015 AIP Publishing LLC.Advances in DNA nanotechnology have stimulated the search for simple motif...
Advances in DNA nanotechnology have stimulated the search for simple motifs that can be used to cont...
Advances in DNA nanotechnology have stimulated the search for simple motifs that can be used to cont...
Advances in DNA nanotechnology have stimulated the search for simple motifs that can be used to cont...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...
Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we devel...