Protein-protein interactions play key roles in virtually all cellular processes, often forming complex regulatory networks. A powerful tool to study interactions in vivo is fluorescence resonance energy transfer (FRET), which is based on the distance-dependent energy transfer from an excited donor to an acceptor fluorophore. Here, we used FRET to systematically map all protein interactions in the chemotaxis signaling pathway in Escherichia coli, one of the most studied models of signal transduction, and to determine stimulation-induced changes in the pathway. Our FRET analysis identified 19 positive FRET pairs out of the 28 possible protein combinations, with 9 pairs being responsive to chemotactic stimulation. Six stimulation-dependent and...
The spatio-temporal localization of molecular interactions within cells in situ is of great importan...
<div><p>The phosphotransferase system (PTS) plays a pivotal role in the uptake of multiple sugars in...
The chemotaxis signalling network of Escherichia coli is a paradigm for signal transduction and sens...
Protein–protein interactions play key roles in virtually all cellular processes, often forming compl...
The two-component pathway in Escherichia coli chemotaxis has become a paradigm for bacterial signal ...
Most motile bacteria follow spatial gradients of chemical and physical stimuli in their environment....
Bacterial chemotaxis is a model system for signal transduction, noted for its relative simplicity, h...
Protein-protein interactions and signal transduction pathways have traditionally been analysed using...
Motile bacteria can track chemical gradients and adjust their swimming behavior using their chemotax...
Adaptation of the chemotaxis sensory pathway of the bacterium Escherichia coli is integral for detec...
The phosphotransferase system (PTS) plays a pivotal role in the uptake of multiple sugars in Escheri...
Adaptation of the chemotaxis sensory pathway of the bacterium Escherichia coli is integral for detec...
Sensory systems rescale their response sensitivity upon adaptation according to simple strategies th...
The phosphotransferase system (PTS) plays a pivotal role in the uptake of multiple sugars in Escheri...
BACKGROUND: Bacteria-triggered signaling events in infected host cells are key elements in shaping t...
The spatio-temporal localization of molecular interactions within cells in situ is of great importan...
<div><p>The phosphotransferase system (PTS) plays a pivotal role in the uptake of multiple sugars in...
The chemotaxis signalling network of Escherichia coli is a paradigm for signal transduction and sens...
Protein–protein interactions play key roles in virtually all cellular processes, often forming compl...
The two-component pathway in Escherichia coli chemotaxis has become a paradigm for bacterial signal ...
Most motile bacteria follow spatial gradients of chemical and physical stimuli in their environment....
Bacterial chemotaxis is a model system for signal transduction, noted for its relative simplicity, h...
Protein-protein interactions and signal transduction pathways have traditionally been analysed using...
Motile bacteria can track chemical gradients and adjust their swimming behavior using their chemotax...
Adaptation of the chemotaxis sensory pathway of the bacterium Escherichia coli is integral for detec...
The phosphotransferase system (PTS) plays a pivotal role in the uptake of multiple sugars in Escheri...
Adaptation of the chemotaxis sensory pathway of the bacterium Escherichia coli is integral for detec...
Sensory systems rescale their response sensitivity upon adaptation according to simple strategies th...
The phosphotransferase system (PTS) plays a pivotal role in the uptake of multiple sugars in Escheri...
BACKGROUND: Bacteria-triggered signaling events in infected host cells are key elements in shaping t...
The spatio-temporal localization of molecular interactions within cells in situ is of great importan...
<div><p>The phosphotransferase system (PTS) plays a pivotal role in the uptake of multiple sugars in...
The chemotaxis signalling network of Escherichia coli is a paradigm for signal transduction and sens...