Inducible chemical-genetic fluorescent markers are promising tools for live cell imaging requiring high spatiotemporal resolution and low background fluorescence. The fluorescence-activating and absorption shifting tag (FAST) was recently developed to form fluorescent molecular complexes with a family of small, synthetic fluorogenic chromophores (so-called fluorogens). Here, we use rational design to modify the binding pocket of the protein and screen for improved fluorescence performances with four different fluorogens. The introduction of a single mutation results in improvements in both quantum yield and dissociation constant with nearly all fluorogens tested. Our improved FAST (iFAST) allowed the generation of a tandem iFAST (td-iFAST) ...
International audience“Smart fluorophores”, such as reversibly switchable fluorescent proteins, are ...
Fluorescence, the absorption and re-emission of photons with longer wavelengths, is one of those ama...
Diversity-oriented fluorescence library approaches have significantly accelerated the development of...
International audienceBiocompatible fluorescent reporters with spectral properties spanning the enti...
Studying protein activities could help us to understand the complex mechanisms controlling cells and...
Fluorescent probes are undoubtedly powerful tools for the study of living organisms. Here, we presen...
International audienceThis paper presents Yellow Fluorescence-Activating and absorption-Shifting Tag...
International audienceFar-red emitting fluorescent labels are highly desirable for spectral multiple...
International audienceSpectrally separated fluorophores allow the observation of multiple targets si...
“Smart fluorophores”, such as reversibly switchable fluorescent proteins, are crucial for advanced f...
Genetically encoded fluorescent proteins (FPs) are highly utilized in cell biology research to study...
The discovery and use of fluorescent proteins revolutionized cell biology by allowing the visualizat...
Fluorescence, the absorption and re-emission of photons with longer wavelengths, is one of those ama...
“Smart fluorophores”, such as reversibly switchable fluorescent proteins, are crucial for advanced f...
International audience“Smart fluorophores”, such as reversibly switchable fluorescent proteins, are ...
Fluorescence, the absorption and re-emission of photons with longer wavelengths, is one of those ama...
Diversity-oriented fluorescence library approaches have significantly accelerated the development of...
International audienceBiocompatible fluorescent reporters with spectral properties spanning the enti...
Studying protein activities could help us to understand the complex mechanisms controlling cells and...
Fluorescent probes are undoubtedly powerful tools for the study of living organisms. Here, we presen...
International audienceThis paper presents Yellow Fluorescence-Activating and absorption-Shifting Tag...
International audienceFar-red emitting fluorescent labels are highly desirable for spectral multiple...
International audienceSpectrally separated fluorophores allow the observation of multiple targets si...
“Smart fluorophores”, such as reversibly switchable fluorescent proteins, are crucial for advanced f...
Genetically encoded fluorescent proteins (FPs) are highly utilized in cell biology research to study...
The discovery and use of fluorescent proteins revolutionized cell biology by allowing the visualizat...
Fluorescence, the absorption and re-emission of photons with longer wavelengths, is one of those ama...
“Smart fluorophores”, such as reversibly switchable fluorescent proteins, are crucial for advanced f...
International audience“Smart fluorophores”, such as reversibly switchable fluorescent proteins, are ...
Fluorescence, the absorption and re-emission of photons with longer wavelengths, is one of those ama...
Diversity-oriented fluorescence library approaches have significantly accelerated the development of...