Fluorogenic protein tagging systems have been less developed for prokaryotes than for eukaryotic cell systems. Here, we extend the concept of noncovalent fluorogenic protein tags in bacteria by introducing transcription factor-based tags, namely, LmrR and RamR, for probe binding and fluorescence readout under aerobic and anaerobic conditions. We developed two chemogenetic protein tags that impart fluorogenicity and a longer fluorescence lifetime to reversibly bound organic fluorophores, hence the name Chemogenetic Tags with Probe Exchange (CTPEs). We present an extensive characterization of 30 fluorophores reversibly interacting with the two different CTPEs and conclude that aromatic planar structures bind with high specificity to the hydro...
The uses of fluorescent reporters derived from green fluorescent protein have proved invaluable for ...
Developed to complement the use of fluorescent proteins in live cell imaging, chemical tags enjoy th...
Visualizing and quantifying molecular motion and interactions inside living cells provides crucial i...
Fluorogenic protein tagging systems have been less developed for prokaryotes than for eukaryotic cel...
Fluorescent probes are undoubtedly powerful tools for the study of living organisms. Here, we presen...
The development of molecular probes to visualize cellular processes is an important challenge in che...
The micro-viscosity and molecular crowding experienced by specific proteins can regulate their dynam...
Fluorescence imaging is a powerful technique for the real-time noninvasive monitoring of protein dyn...
In current biology, there is a noticeable trend in developing new tools and methods for targeting pr...
AbstractChemical tags can be used to selectively label proteins with fluorophores that have high pho...
The fluorescent tagging of proteins in the natural environment of the cell is an emerging technique ...
Methods that enable the super-resolution imaging of intracellular proteins in live bacterial cells p...
Optical fluorescence microscopy plays a pivotal role in the exploration of biological structure and ...
A profound insight into life can only be obtained by studying living systems with high spatiotempora...
AbstractStudies of biomolecules in vivo are crucial to understand their function in a natural, biolo...
The uses of fluorescent reporters derived from green fluorescent protein have proved invaluable for ...
Developed to complement the use of fluorescent proteins in live cell imaging, chemical tags enjoy th...
Visualizing and quantifying molecular motion and interactions inside living cells provides crucial i...
Fluorogenic protein tagging systems have been less developed for prokaryotes than for eukaryotic cel...
Fluorescent probes are undoubtedly powerful tools for the study of living organisms. Here, we presen...
The development of molecular probes to visualize cellular processes is an important challenge in che...
The micro-viscosity and molecular crowding experienced by specific proteins can regulate their dynam...
Fluorescence imaging is a powerful technique for the real-time noninvasive monitoring of protein dyn...
In current biology, there is a noticeable trend in developing new tools and methods for targeting pr...
AbstractChemical tags can be used to selectively label proteins with fluorophores that have high pho...
The fluorescent tagging of proteins in the natural environment of the cell is an emerging technique ...
Methods that enable the super-resolution imaging of intracellular proteins in live bacterial cells p...
Optical fluorescence microscopy plays a pivotal role in the exploration of biological structure and ...
A profound insight into life can only be obtained by studying living systems with high spatiotempora...
AbstractStudies of biomolecules in vivo are crucial to understand their function in a natural, biolo...
The uses of fluorescent reporters derived from green fluorescent protein have proved invaluable for ...
Developed to complement the use of fluorescent proteins in live cell imaging, chemical tags enjoy th...
Visualizing and quantifying molecular motion and interactions inside living cells provides crucial i...