Time-resolved fluorescence resonance energy transfer has been used to investigate the conformational flexibility of a DNA nanostructure. As the size of DNA nanostructures are becoming increasingly smaller, commonly used methods for characterization like atomic force microscopy (AFM) will become increasingly more difficult. Here we demonstrate that time-resolved fluorescence resonance energy transfer (tr-FRET) can serve as a tool for retrieving structural information on small DNA nanostructures. We have formed a DNA pseudohexagon using six different standard 22-mer oligonucleotides. The construct was labeled with a donor (fluorescein) in one corner while "walking" the acceptor (Cy3) from corner to corner around the hexagon. This resulted in ...
During the last fifteen years several methods have been developed for probing biomolecules (DNA, RNA...
We study protein and nucleic acid structure and dynamics using single-molecule fluorescence resonanc...
We have previously introduced tethered fluorophore motion (TFM), a single-molecule fluorescence tech...
WOS:000456749900050International audienceDNA-nanoparticle conjugates are important tools in nanobiot...
This article demonstrates a new fluorescence resonance energy transfer (FRET) based approach to dete...
Time-resolved fluorescence emission measurements, in conjunction with fluorescence resonance energy ...
AbstractSingle-stranded DNA (ssDNA) is an essential intermediate in various DNA metabolic processes ...
DNA-nanoparticle conjugates are important tools in nanobiotechnology. Knowing the orientation, funct...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
<p>Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in bi...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
ABSTRACT Advanced microscopy methods allow obtaining information on (dynamic) conformational changes...
Much has been learnt about DNA since its structure was discovered about half a century ago. Scientis...
During the last fifteen years several methods have been developed for probing biomolecules (DNA, RNA...
We study protein and nucleic acid structure and dynamics using single-molecule fluorescence resonanc...
We have previously introduced tethered fluorophore motion (TFM), a single-molecule fluorescence tech...
WOS:000456749900050International audienceDNA-nanoparticle conjugates are important tools in nanobiot...
This article demonstrates a new fluorescence resonance energy transfer (FRET) based approach to dete...
Time-resolved fluorescence emission measurements, in conjunction with fluorescence resonance energy ...
AbstractSingle-stranded DNA (ssDNA) is an essential intermediate in various DNA metabolic processes ...
DNA-nanoparticle conjugates are important tools in nanobiotechnology. Knowing the orientation, funct...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
<p>Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in bi...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
ABSTRACT Advanced microscopy methods allow obtaining information on (dynamic) conformational changes...
Much has been learnt about DNA since its structure was discovered about half a century ago. Scientis...
During the last fifteen years several methods have been developed for probing biomolecules (DNA, RNA...
We study protein and nucleic acid structure and dynamics using single-molecule fluorescence resonanc...
We have previously introduced tethered fluorophore motion (TFM), a single-molecule fluorescence tech...