ABSTRACT The use of fluorescent and luminescent proteins in visualizing proteins has become a powerful tool in understanding molecular and cellular processes within living organisms. This success has resulted in an ever-increasing demand for new and more versatile protein-labeling tools that permit light-based detection of proteins within living cells. In this report, we present data supporting the use of the self-labeling HaloTag protein as a light-emitting reporter for protein fusions within the model prokaryote Escherichia coli. We show that functional protein fusions of the HaloTag can be detected both in vivo and in vitro when expressed within the cytoplasmic or periplasmic compartments of E. coli. The capacity to visually detect prote...
Lysosomal degradative compartments hydrolyze macromolecules to generate basic building blocks that f...
To visualize specific proteins in living cells, cell biologists have fused the green fluorescent pro...
SummaryThe visualization of complex cellular processes involving multiple proteins requires the use ...
Visualizing and quantifying molecular motion and interactions inside living cells provides crucial i...
A cell’s biochemistry is now known to be the biochem-istry of molecular machines, that is, protein c...
The investigation of the subcellular localization, dynamics and interaction of proteins and protein ...
A s a result of the complexity inherent in cellularprocesses, multiple analytical methods are gen-er...
The ability to visualize, track, and quantify molecules and events in living cells with high spatial...
Cell biology is increasingly dependent on quantitative methods resulting in the need for microscopic...
Reliable methods to det. the subcellular localization of bacterial proteins are needed for the study...
Cell biology is increasingly dependent on quantitative methods resulting in the need for microscopic...
The use of fluorescent protein fusions has revolutionised our understanding of bacterial cell struct...
Methods that enable the super-resolution imaging of intracellular proteins in live bacterial cells p...
AbstractGenetically encoded fluorescent labels, such as green fluorescent protein, make it possible ...
The uses of fluorescent reporters derived from green fluorescent protein have proved invaluable for ...
Lysosomal degradative compartments hydrolyze macromolecules to generate basic building blocks that f...
To visualize specific proteins in living cells, cell biologists have fused the green fluorescent pro...
SummaryThe visualization of complex cellular processes involving multiple proteins requires the use ...
Visualizing and quantifying molecular motion and interactions inside living cells provides crucial i...
A cell’s biochemistry is now known to be the biochem-istry of molecular machines, that is, protein c...
The investigation of the subcellular localization, dynamics and interaction of proteins and protein ...
A s a result of the complexity inherent in cellularprocesses, multiple analytical methods are gen-er...
The ability to visualize, track, and quantify molecules and events in living cells with high spatial...
Cell biology is increasingly dependent on quantitative methods resulting in the need for microscopic...
Reliable methods to det. the subcellular localization of bacterial proteins are needed for the study...
Cell biology is increasingly dependent on quantitative methods resulting in the need for microscopic...
The use of fluorescent protein fusions has revolutionised our understanding of bacterial cell struct...
Methods that enable the super-resolution imaging of intracellular proteins in live bacterial cells p...
AbstractGenetically encoded fluorescent labels, such as green fluorescent protein, make it possible ...
The uses of fluorescent reporters derived from green fluorescent protein have proved invaluable for ...
Lysosomal degradative compartments hydrolyze macromolecules to generate basic building blocks that f...
To visualize specific proteins in living cells, cell biologists have fused the green fluorescent pro...
SummaryThe visualization of complex cellular processes involving multiple proteins requires the use ...