DNA is increasingly being used as the engineering material of choice for the construction of nanoscale circuits, structures, and motors. Many of these enzyme-free constructions function by DNA strand displacement reactions. The kinetics of strand displacement can be modulated by toeholds, short single-stranded segments of DNA that colocalize reactant DNA molecules. Recently, the toehold exchange process was introduced as a method for designing fast and reversible strand displacement reactions. Here, we characterize the kinetics of DNA toehold exchange and model it as a three-step process. This model is simple and quantitatively predicts the kinetics of 85 different strand displacement reactions from the DNA sequences. Furthermore, we use to...
Toehold-mediated DNA strand displacement has proven powerful in the construction of various DNA circ...
A central goal of biomolecular engineering is the construction of tools to manipulate nanoscale proc...
Hybridization of DNA strands can be used to build molecular devices, and control of the kinetics of ...
Dynamic DNA nanotechnology, a subfield of DNA nanotechnology, is concerned with the study and applic...
Dynamic DNA nanotechnology, a subfield of DNA nanotechnology, is concerned with the study and applic...
Dynamic DNA nanotechnology often uses toehold-mediated strand displacement for controlling reaction ...
Dynamic DNA nanotechnology often uses toehold-mediated strand displacement for controlling reaction ...
Dynamic DNA nanotechnology often uses toehold-mediated strand displacement for controlling reaction ...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
Dynamic DNA nanotechnology often uses toehold-mediated strand displacement for controlling reaction ...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
Hybridization of DNA strands can be used to build molecular devices, and control of the kinetics o...
Surface-immobilization of molecules can have a profound influence on their structure, function and d...
AbstractWe study the thermodynamics and kinetics of an RNA toehold-mediated strand displacement reac...
Toehold-mediated DNA strand displacement has proven powerful in the construction of various DNA circ...
A central goal of biomolecular engineering is the construction of tools to manipulate nanoscale proc...
Hybridization of DNA strands can be used to build molecular devices, and control of the kinetics of ...
Dynamic DNA nanotechnology, a subfield of DNA nanotechnology, is concerned with the study and applic...
Dynamic DNA nanotechnology, a subfield of DNA nanotechnology, is concerned with the study and applic...
Dynamic DNA nanotechnology often uses toehold-mediated strand displacement for controlling reaction ...
Dynamic DNA nanotechnology often uses toehold-mediated strand displacement for controlling reaction ...
Dynamic DNA nanotechnology often uses toehold-mediated strand displacement for controlling reaction ...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
Dynamic DNA nanotechnology often uses toehold-mediated strand displacement for controlling reaction ...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
Here we show a general approach to achieve dissipative control over toehold-mediated strand-displace...
Hybridization of DNA strands can be used to build molecular devices, and control of the kinetics o...
Surface-immobilization of molecules can have a profound influence on their structure, function and d...
AbstractWe study the thermodynamics and kinetics of an RNA toehold-mediated strand displacement reac...
Toehold-mediated DNA strand displacement has proven powerful in the construction of various DNA circ...
A central goal of biomolecular engineering is the construction of tools to manipulate nanoscale proc...
Hybridization of DNA strands can be used to build molecular devices, and control of the kinetics of ...