Dynamic DNA assemblies, including catalytic DNA circuits, DNA nanomachines, molecular translators, and reconfigurable nanostructures, have shown promising potential to regulate cell functions, deliver therapeutic reagents, and amplify detection signals for molecular diagnostics and imaging. However, such applications of dynamic DNA assembly systems have been limited to nucleic acids and a few small molecules, due to the limited approaches to trigger the DNA assemblies. Herein, we describe a binding-induced DNA strand displacement strategy that can convert protein binding to the release of a predesigned output DNA at room temperature with high conversion efficiency and low background. This strategy allows us to construct dynamic DNA assembly...
We describe the binding-induced DNA assembly principle and strategy that enable ultrasensitive detec...
The discovery of sequence-specific hybridization has allowed the development of DNA nanotechnology, ...
We demonstrate a strategy to trigger and finely control the assembly of supramolecular DNA nanostruc...
ABSTRACT: Dynamic DNA assemblies, including cata-lytic DNA circuits, DNA nanomachines, molecular tra...
Abstract Stimuli‐responsive designs with exogenous stimuli enable remote and reversible control of D...
Biological systems reconfigure their shape in response to external stimuli at the level of single ce...
Dynamic DNA nanotechnology, a subfield of DNA nanotechnology, is concerned with the study and applic...
Biological cells routinely reconfigure their shape using dynamic signalling and regulatory networks ...
Chen, WilfredNature has evolved biological systems to exist as highly intricate and dynamic networks...
Deoxyribonucleic acid or DNA is an essential component in cells and organisms for genetic informatio...
DNA, apart from being a nature biological information carrier, has also been recognized as a useful ...
DNA three-way junctions (DNA TWJs) are important building blocks to construct DNA architectures and ...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nanos...
Precise control of biosystems requires development of materials that can dynamically change physicoc...
The central dogma of molecular biology is the principal framework for understanding how nucleic acid...
We describe the binding-induced DNA assembly principle and strategy that enable ultrasensitive detec...
The discovery of sequence-specific hybridization has allowed the development of DNA nanotechnology, ...
We demonstrate a strategy to trigger and finely control the assembly of supramolecular DNA nanostruc...
ABSTRACT: Dynamic DNA assemblies, including cata-lytic DNA circuits, DNA nanomachines, molecular tra...
Abstract Stimuli‐responsive designs with exogenous stimuli enable remote and reversible control of D...
Biological systems reconfigure their shape in response to external stimuli at the level of single ce...
Dynamic DNA nanotechnology, a subfield of DNA nanotechnology, is concerned with the study and applic...
Biological cells routinely reconfigure their shape using dynamic signalling and regulatory networks ...
Chen, WilfredNature has evolved biological systems to exist as highly intricate and dynamic networks...
Deoxyribonucleic acid or DNA is an essential component in cells and organisms for genetic informatio...
DNA, apart from being a nature biological information carrier, has also been recognized as a useful ...
DNA three-way junctions (DNA TWJs) are important building blocks to construct DNA architectures and ...
DNA nanotechnology has emerged as a reliable and programmable way of controlling matter at the nanos...
Precise control of biosystems requires development of materials that can dynamically change physicoc...
The central dogma of molecular biology is the principal framework for understanding how nucleic acid...
We describe the binding-induced DNA assembly principle and strategy that enable ultrasensitive detec...
The discovery of sequence-specific hybridization has allowed the development of DNA nanotechnology, ...
We demonstrate a strategy to trigger and finely control the assembly of supramolecular DNA nanostruc...