Caged organic fluorophores are established tools for localization-based super-resolution imaging. Their use relies on reversible deactivation of standard organic fluorophores by chemical reduction or commercially available caged dyes with ON switching of the fluorescent signal by ultraviolet (UV) light. Here, we establish caging of cyanine fluorophores and caged rhodamine dyes, i.e., chemical deactivation of fluorescence, for single-molecule Forster resonance energy transfer (smFRET) experiments with freely diffusing molecules. They allow temporal separation and sorting of multiple intramolecular donor acceptor pairs during solution-based smFRET. We use this "caged FRET" methodology for the study of complex biochemical species such as multi...
The conformations of biological macromolecules are intimately related to their cellular functions. C...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
Single-molecule FRET is a powerful, versatile method with widely opened frontiers going further beyo...
Caged organic fluorophores are established tools for localization-based super-resolution imaging. Th...
Caged organic fluorophores are established tools for localization-based super-resolution imaging. Th...
Caged organic fluorophores are established tools for localization-based super-resolution imaging. Th...
AbstractOrganic fluorophores common to fluorescence-based investigations suffer from unwanted photop...
Inter- or intramolecular distances of biomolecules can be studied by Forster resonance energy transf...
One of the most popular means to follow interactions between bio(macro)molecules is Forster resonanc...
We demonstrate theoretically and experimentally the quantification of Förster resonance energy trans...
During the last fifteen years several methods have been developed for probing biomolecules (DNA, RNA...
Single-molecule fluorescence techniques are ideally suited to provide information about the structur...
The conformations of biological macromolecules are intimately related to their cellular functions. C...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
Single-molecule FRET is a powerful, versatile method with widely opened frontiers going further beyo...
Caged organic fluorophores are established tools for localization-based super-resolution imaging. Th...
Caged organic fluorophores are established tools for localization-based super-resolution imaging. Th...
Caged organic fluorophores are established tools for localization-based super-resolution imaging. Th...
AbstractOrganic fluorophores common to fluorescence-based investigations suffer from unwanted photop...
Inter- or intramolecular distances of biomolecules can be studied by Forster resonance energy transf...
One of the most popular means to follow interactions between bio(macro)molecules is Forster resonanc...
We demonstrate theoretically and experimentally the quantification of Förster resonance energy trans...
During the last fifteen years several methods have been developed for probing biomolecules (DNA, RNA...
Single-molecule fluorescence techniques are ideally suited to provide information about the structur...
The conformations of biological macromolecules are intimately related to their cellular functions. C...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
Single-molecule FRET is a powerful, versatile method with widely opened frontiers going further beyo...