A commonly used strategy by microorganisms to survive multiple stresses involves a signal transduction cascade that increases the expression of stress-responsive genes. Stress signals can be integrated by a multiprotein signaling hub that responds to various signals to effect a single outcome. We obtained a medium- resolution cryo- electron microscopy reconstruction of the 1.8- megadalton "stressosome" from Bacillus subtilis. Fitting known crystal structures of components into this reconstruction gave a pseudoatomic structure, which had a virus capsid-like core with sensory extensions. We suggest that the different sensory extensions respond to different signals, whereas the conserved domains in the core integrate the varied signals. The ar...
Bacteria use a variety of stress-sensing systems to sense and respond to diverse stressors and to en...
Sensing and responding to environmental cues is critical for the adaptability and success of the foo...
To enable the processing of chemical gradients, chemotactic bacteria possess large arrays of transme...
The stressosome is a Mega Dalton macromolecular complex involved in stress adaptation in bacteria. S...
How the stressosome, the epicenter of the stress response in bacteria, transmits stress signals from...
The stressosome is a multiprotein, 1.8-MDa icosahedral complex that transmits diverse environmental ...
Bacteria use a variety of stress-sensing systems to sense and respond to diverse stressors and to en...
The stressosome is a pseudo-icosahedral megadalton bacterial stress-sensing protein complex consisti...
The stressosome is a 1.8-MDa cytoplasmic complex that conveys environmental signals to the σ(B) stre...
SummaryThe stressosome complex regulates downstream effectors in response to environmental signals. ...
International audienceMotile bacteria sense chemical gradients with transmembrane receptors organise...
The soil bacterium Bacillus subtilis responds to fluctuating conditions in its environment with a wi...
A key challenge for microbiology is to understand how evolution has shaped the wiring of regulatory ...
Microorganisms survive stresses by alternating the expression of genes suitable for surviving the im...
Stressosomes are stress-sensing protein complexes widely conserved among bacteria. Although a role i...
Bacteria use a variety of stress-sensing systems to sense and respond to diverse stressors and to en...
Sensing and responding to environmental cues is critical for the adaptability and success of the foo...
To enable the processing of chemical gradients, chemotactic bacteria possess large arrays of transme...
The stressosome is a Mega Dalton macromolecular complex involved in stress adaptation in bacteria. S...
How the stressosome, the epicenter of the stress response in bacteria, transmits stress signals from...
The stressosome is a multiprotein, 1.8-MDa icosahedral complex that transmits diverse environmental ...
Bacteria use a variety of stress-sensing systems to sense and respond to diverse stressors and to en...
The stressosome is a pseudo-icosahedral megadalton bacterial stress-sensing protein complex consisti...
The stressosome is a 1.8-MDa cytoplasmic complex that conveys environmental signals to the σ(B) stre...
SummaryThe stressosome complex regulates downstream effectors in response to environmental signals. ...
International audienceMotile bacteria sense chemical gradients with transmembrane receptors organise...
The soil bacterium Bacillus subtilis responds to fluctuating conditions in its environment with a wi...
A key challenge for microbiology is to understand how evolution has shaped the wiring of regulatory ...
Microorganisms survive stresses by alternating the expression of genes suitable for surviving the im...
Stressosomes are stress-sensing protein complexes widely conserved among bacteria. Although a role i...
Bacteria use a variety of stress-sensing systems to sense and respond to diverse stressors and to en...
Sensing and responding to environmental cues is critical for the adaptability and success of the foo...
To enable the processing of chemical gradients, chemotactic bacteria possess large arrays of transme...