The mechanical properties of DNA nanostructures are of widespread interest as applications that exploit their stability under constant or intermittent external forces become increasingly common. We explore the force response of DNA origami in comprehensive detail by combining AFM single molecule force spectroscopy experiments with simulations using oxDNA, a coarse-grained model of DNA at the nucleotide level, to study the unravelling of an iconic origami system: the Rothemund tile. We contrast the force-induced melting of the tile with simulations of an origami 10-helix bundle. Finally, we simulate a recently proposed origami biosensor, whose function takes advantage of origami behavior under tension. We observe characteristic stick–slip un...
DNA nanoassemblies have demonstrated wide applications in various fields including nanomaterials, dr...
Forces in biological systems are typically investigated at the single-molecule level with atomic for...
We used coarse-grained molecular dynamics simulations to characterize the global and local mechanica...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nano structures are of widespread interest as applications that exp...
We have simulated large-scale DNA nanostructures using the oxDNA software which uses coarse-graining...
The profound simplicity and versatility of the molecule at the heart of all earth- bound life forms,...
DNA origami represents a class of highly programmable macromolecules. Their moderate mechanical rigi...
DNA origami has emerged as a versatile method to synthesize nanostructures with high precision. This...
DNA nanoassemblies have demonstrated wide applications in various fields including nanomaterials, dr...
Forces in biological systems are typically investigated at the single-molecule level with atomic for...
We used coarse-grained molecular dynamics simulations to characterize the global and local mechanica...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nanostructures are of widespread interest as applications that expl...
The mechanical properties of DNA nano structures are of widespread interest as applications that exp...
We have simulated large-scale DNA nanostructures using the oxDNA software which uses coarse-graining...
The profound simplicity and versatility of the molecule at the heart of all earth- bound life forms,...
DNA origami represents a class of highly programmable macromolecules. Their moderate mechanical rigi...
DNA origami has emerged as a versatile method to synthesize nanostructures with high precision. This...
DNA nanoassemblies have demonstrated wide applications in various fields including nanomaterials, dr...
Forces in biological systems are typically investigated at the single-molecule level with atomic for...
We used coarse-grained molecular dynamics simulations to characterize the global and local mechanica...