We have designed programmable DNA-based nanoswitches whose closing/opening can be triggered over specific different pH windows. These nanoswitches form an intramolecular triplex DNA structure through pH-sensitive parallel Hoogsteen interactions. We demonstrate that by simply changing the relative content of TAT/CGC triplets in the switches, we can rationally tune their pH dependence over more than 5 pH units. The ability to design DNA-based switches with tunable pH dependence provides the opportunity to engineer pH nanosensors with unprecedented wide sensitivity to pH changes. For example, by mixing in the same solution three switches with different pH sensitivity, we developed a pH nanosensor that can precisely monitor pH variations over 5...
DNA nanodevices that mimic natural biomolecular machines changing configurations in response to exte...
Achieving strategies to finely regulate with biological inputs the formation and functionality of DN...
We propose an experimental and simulative approach to study the effect of integrating a DNA function...
We have designed programmable DNA-based nanoswitches whose closing/opening can be triggered over spe...
Triplex DNA is becoming a very useful domain to design pH-triggered DNA nanoswitches and nanodevices...
A few cellular compartments maintain acidic environments in their interiors that are crucial for the...
DNA nanomachines are synthetic assemblies that switch between defined molecular conformations upon s...
Achieving strategies to finely regulate with biological inputs the formation and functionality of DN...
We report the first in vitro selection of DNA nanostructures that switch their conformation when tri...
A simple and robust DNA nanotriangle that can be conveniently reconfigured by environmental pH chang...
Here we couple experimental and simulative techniques to characterize the structural/dynamical behav...
Here we couple experimental and simulative techniques to characterize the structural/dynamical behav...
DNA nanodevices that mimic natural biomolecular machines changing configurations in response to exte...
Achieving strategies to finely regulate with biological inputs the formation and functionality of DN...
We propose an experimental and simulative approach to study the effect of integrating a DNA function...
We have designed programmable DNA-based nanoswitches whose closing/opening can be triggered over spe...
Triplex DNA is becoming a very useful domain to design pH-triggered DNA nanoswitches and nanodevices...
A few cellular compartments maintain acidic environments in their interiors that are crucial for the...
DNA nanomachines are synthetic assemblies that switch between defined molecular conformations upon s...
Achieving strategies to finely regulate with biological inputs the formation and functionality of DN...
We report the first in vitro selection of DNA nanostructures that switch their conformation when tri...
A simple and robust DNA nanotriangle that can be conveniently reconfigured by environmental pH chang...
Here we couple experimental and simulative techniques to characterize the structural/dynamical behav...
Here we couple experimental and simulative techniques to characterize the structural/dynamical behav...
DNA nanodevices that mimic natural biomolecular machines changing configurations in response to exte...
Achieving strategies to finely regulate with biological inputs the formation and functionality of DN...
We propose an experimental and simulative approach to study the effect of integrating a DNA function...