We describe fluorescence labeling of newly synthesized proteins in Escherichia coli cells by means of Cu(I)-catalyzed cycloaddition between alkynyl amino acid side chains and the fluorogenic dye 3-azido-7-hydroxycoumarin. The method involves co-translational labeling of proteins by the non-natural amino acids homopropargylglycine (Hpg) or ethynylphenylalanine (Eth) followed by treatment with the dye. As a demonstration, the model protein barstar was expressed and treated overnight with Cu(I) and 3-azido-7-hydroxycoumarin. Examination of treated cells by confocal microscopy revealed that strong fluorescence enhancement was observed only for alkynyl-barstar treated with Cu(I) and the reactive dye. The cellular fluorescence was punctate, and g...
The fluorescent tagging of proteins in the natural environment of the cell is an emerging technique ...
Protein synthesis is a dynamic process that tunes the cellular proteome in response to internal and ...
The goal of this work is to identify unnatural amino acids (UAAs) that can be incorporated into prot...
Labeling of the cell surface of Escherichia coli was accomplished by expression of a recombinant out...
Modern proteomic methods enable efficient identification of the hundreds or thousands of proteins pr...
Cell-selective metabolic labeling of proteins with noncanonical amino acids enables the study of pr...
Many biophysical techniques that are available to study the structure, function and dynamics of cell...
The introduction of unnatural amino acids with novel properties into proteins is potentially a usefu...
Fluorescent d-amino acids (FDAAs) enable efficient in situ labeling of peptidoglycan in diverse bact...
Methods that enable the super-resolution imaging of intracellular proteins in live bacterial cells p...
Live and let dye: Three coumarin-cyclooctyne conjugates have been used to label proteins tagged with...
Incorporation of noncanonical amino acids into cellular proteins often requires engineering new amin...
Fluorescence can be used in optical imaging to view cell activity in vivo. Fluorescent proteins and ...
Newly synthesized cellular proteins can be tagged with a variety of metabolic labels that distinguis...
Metabolic labeling of proteins with the methionine surrogate azidonorleucine can be targeted exclusi...
The fluorescent tagging of proteins in the natural environment of the cell is an emerging technique ...
Protein synthesis is a dynamic process that tunes the cellular proteome in response to internal and ...
The goal of this work is to identify unnatural amino acids (UAAs) that can be incorporated into prot...
Labeling of the cell surface of Escherichia coli was accomplished by expression of a recombinant out...
Modern proteomic methods enable efficient identification of the hundreds or thousands of proteins pr...
Cell-selective metabolic labeling of proteins with noncanonical amino acids enables the study of pr...
Many biophysical techniques that are available to study the structure, function and dynamics of cell...
The introduction of unnatural amino acids with novel properties into proteins is potentially a usefu...
Fluorescent d-amino acids (FDAAs) enable efficient in situ labeling of peptidoglycan in diverse bact...
Methods that enable the super-resolution imaging of intracellular proteins in live bacterial cells p...
Live and let dye: Three coumarin-cyclooctyne conjugates have been used to label proteins tagged with...
Incorporation of noncanonical amino acids into cellular proteins often requires engineering new amin...
Fluorescence can be used in optical imaging to view cell activity in vivo. Fluorescent proteins and ...
Newly synthesized cellular proteins can be tagged with a variety of metabolic labels that distinguis...
Metabolic labeling of proteins with the methionine surrogate azidonorleucine can be targeted exclusi...
The fluorescent tagging of proteins in the natural environment of the cell is an emerging technique ...
Protein synthesis is a dynamic process that tunes the cellular proteome in response to internal and ...
The goal of this work is to identify unnatural amino acids (UAAs) that can be incorporated into prot...