The reversible switching of catalytic systems capable of performing complex DNA computing operations using the temporal control of two orthogonal photoswitches is described. Two distinct photoresponsive molecules have been separately incorporated into a split horseradish peroxidase-mimicking DNAzyme. We show that its catalytic function can be turned on and off reversibly upon irradiation with specific wavelengths of light. The system responds orthogonally to a selection of irradiation wavelengths and durations of irradiation. Furthermore, the DNAzyme exhibits reversible switching and retains this ability throughout multiple switching cycles. We apply our system as a light-controlled 4:2 multiplexer. Orthogonally photoswitchable DNAz...
Homing endonucleases are used in a wide range of biotechnological applications including gene editin...
Since the discovery of ribozymes in the 198O\u27s, there have been many examples of catalytic DNA or...
G-quadruplex has been developed as an innovator for analytical chemistry and biomedicine due to its ...
The reversible switching of catalytic systems capable of performing complex DNA computing operations...
Reversible control over the functionality of biological systems via external triggers may be used in...
The hybridization chain reaction (HCR) and fuel–catalyst cycles have been applied to address the pro...
Reversible control over the functionality of biological systems via external triggers may be used in...
DNA nanostructures acting as DNA machines are described. Specifically, DNA “walkers” assembled on nu...
A recent trend in DNA nanotechnology consists of the assembly of architectures with dynamic properti...
The switchable reconfiguration of a mixture of two dimers of DNA origami tiles, AB and CD, into a mi...
A recent trend in DNA nanotechnology consists of the assembly of architectures with dynamic properti...
DNA switches that can change conformation in response to certain wavelengths of light could enable r...
We demonstrated the generality of a strategy for photoswitching the activity of functional oligonucl...
We demonstrate a new method to reversibly cross-link DNA-nanoparticle dimers, trimers, and tetramers...
Substrate channeling, in which a metabolic intermediate is directly passed from one enzyme to the ne...
Homing endonucleases are used in a wide range of biotechnological applications including gene editin...
Since the discovery of ribozymes in the 198O\u27s, there have been many examples of catalytic DNA or...
G-quadruplex has been developed as an innovator for analytical chemistry and biomedicine due to its ...
The reversible switching of catalytic systems capable of performing complex DNA computing operations...
Reversible control over the functionality of biological systems via external triggers may be used in...
The hybridization chain reaction (HCR) and fuel–catalyst cycles have been applied to address the pro...
Reversible control over the functionality of biological systems via external triggers may be used in...
DNA nanostructures acting as DNA machines are described. Specifically, DNA “walkers” assembled on nu...
A recent trend in DNA nanotechnology consists of the assembly of architectures with dynamic properti...
The switchable reconfiguration of a mixture of two dimers of DNA origami tiles, AB and CD, into a mi...
A recent trend in DNA nanotechnology consists of the assembly of architectures with dynamic properti...
DNA switches that can change conformation in response to certain wavelengths of light could enable r...
We demonstrated the generality of a strategy for photoswitching the activity of functional oligonucl...
We demonstrate a new method to reversibly cross-link DNA-nanoparticle dimers, trimers, and tetramers...
Substrate channeling, in which a metabolic intermediate is directly passed from one enzyme to the ne...
Homing endonucleases are used in a wide range of biotechnological applications including gene editin...
Since the discovery of ribozymes in the 198O\u27s, there have been many examples of catalytic DNA or...
G-quadruplex has been developed as an innovator for analytical chemistry and biomedicine due to its ...