Precise control over the nucleation, growth, and termination of self-assembly processes is a fundamental tool for controlling product yield and assembly dynamics. Mechanisms for altering these processes programmatically could allow the use of simple components to self-assemble complex final products or to design processes allowing for dynamic assembly or reconfiguration. Here we use DNA tile self-assembly to develop general design principles for building complexes that can bind to a growing biomolecular assembly and terminate its growth by systematically characterizing how different DNA origami nanostructures interact with the growing ends of DNA tile nanotubes. We find that nanostructures that present binding interfaces for all of the bind...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nanos...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nano...
Programmed self-assembly of strands of nucleic acid has proved highly effective for creating a wide ...
Precise control over the nucleation, growth, and termination of self-assembly processes is a fundame...
Control over when and where nanostructures arise is essential for the self-assembly of dynamic or mu...
We demonstrate a versatile process for assembling micron-scale filament architectures by controlling...
DNA tile based self-assembly provides a bottom-up approach to construct desired nanostructures. DNA ...
DNA tiles provide a promising technique for assembling structures with nanoscale resolution through ...
DNA tiles provide a promising technique for assembling structures with nanoscale resolution through ...
Biological systems reconfigure their shape in response to external stimuli at the level of single ce...
Biological systems reconfigure their shape in response to external stimuli at the level of single ce...
ABSTRACT: Controlled nucleation of nanoscale building blocks by geometrically defined seeds implante...
In this paper we report the design and synthesis of DNA molecules (referred to as DNA tiles) with ...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nano...
Bottom-up fabrication of nanoscale structures relies on chemical processes to direct self-assembly. ...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nanos...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nano...
Programmed self-assembly of strands of nucleic acid has proved highly effective for creating a wide ...
Precise control over the nucleation, growth, and termination of self-assembly processes is a fundame...
Control over when and where nanostructures arise is essential for the self-assembly of dynamic or mu...
We demonstrate a versatile process for assembling micron-scale filament architectures by controlling...
DNA tile based self-assembly provides a bottom-up approach to construct desired nanostructures. DNA ...
DNA tiles provide a promising technique for assembling structures with nanoscale resolution through ...
DNA tiles provide a promising technique for assembling structures with nanoscale resolution through ...
Biological systems reconfigure their shape in response to external stimuli at the level of single ce...
Biological systems reconfigure their shape in response to external stimuli at the level of single ce...
ABSTRACT: Controlled nucleation of nanoscale building blocks by geometrically defined seeds implante...
In this paper we report the design and synthesis of DNA molecules (referred to as DNA tiles) with ...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nano...
Bottom-up fabrication of nanoscale structures relies on chemical processes to direct self-assembly. ...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nanos...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nano...
Programmed self-assembly of strands of nucleic acid has proved highly effective for creating a wide ...