The stressosome is a Mega Dalton macromolecular complex involved in stress adaptation in bacteria. Stressosomes are considered as stress signaling hubs. They are able to perceive a variety of different stress stimuli and transduce them into one single cellular answer, which is the initialization of a transcriptional up-regulation of hundreds of different genes encoding for universal but also very specific stress response proteins. The stressosome of Bacillus subtilis became a prime example for this intriguing stress-triggered transcriptional regulation when its architecture was determined by Single-particle cryo-electron microscopy (cryo-EM) in 2008. In Gram-positive Bacillus species, the stressosome complex senses changes in salt concent...
Microorganisms survive stresses by alternating the expression of genes suitable for surviving the im...
The human pathogen Listeria monocytogenes can cope with severe environmental challenges, for which t...
Bacteria use a variety of stress-sensing systems to sense and respond to diverse stressors and to en...
How the stressosome, the epicenter of the stress response in bacteria, transmits stress signals from...
A commonly used strategy by microorganisms to survive multiple stresses involves a signal transducti...
The stressosome is a pseudo-icosahedral megadalton bacterial stress-sensing protein complex consisti...
The stressosome is a multiprotein, 1.8-MDa icosahedral complex that transmits diverse environmental ...
The stressosome is a 1.8-MDa cytoplasmic complex that conveys environmental signals to the σ(B) stre...
Stress is a universal phenomenon, and all organisms need a way to cope with it. The Model bacterium ...
SummaryThe stressosome complex regulates downstream effectors in response to environmental signals. ...
The general stress regulon of Bacillus subtilis is controlled by B, a transcription factor that is a...
Bacteria use a variety of stress-sensing systems to sense and respond to diverse stressors and to en...
The stressosome is a 1.8 MDa cytoplasmic complex that controls diverse bacterial signaling pathways....
Stressosomes are stress-sensing protein complexes widely conserved among bacteria. Although a role i...
Bacteria use a variety of systems to sense stress and mount an appropriate response to assure fitnes...
Microorganisms survive stresses by alternating the expression of genes suitable for surviving the im...
The human pathogen Listeria monocytogenes can cope with severe environmental challenges, for which t...
Bacteria use a variety of stress-sensing systems to sense and respond to diverse stressors and to en...
How the stressosome, the epicenter of the stress response in bacteria, transmits stress signals from...
A commonly used strategy by microorganisms to survive multiple stresses involves a signal transducti...
The stressosome is a pseudo-icosahedral megadalton bacterial stress-sensing protein complex consisti...
The stressosome is a multiprotein, 1.8-MDa icosahedral complex that transmits diverse environmental ...
The stressosome is a 1.8-MDa cytoplasmic complex that conveys environmental signals to the σ(B) stre...
Stress is a universal phenomenon, and all organisms need a way to cope with it. The Model bacterium ...
SummaryThe stressosome complex regulates downstream effectors in response to environmental signals. ...
The general stress regulon of Bacillus subtilis is controlled by B, a transcription factor that is a...
Bacteria use a variety of stress-sensing systems to sense and respond to diverse stressors and to en...
The stressosome is a 1.8 MDa cytoplasmic complex that controls diverse bacterial signaling pathways....
Stressosomes are stress-sensing protein complexes widely conserved among bacteria. Although a role i...
Bacteria use a variety of systems to sense stress and mount an appropriate response to assure fitnes...
Microorganisms survive stresses by alternating the expression of genes suitable for surviving the im...
The human pathogen Listeria monocytogenes can cope with severe environmental challenges, for which t...
Bacteria use a variety of stress-sensing systems to sense and respond to diverse stressors and to en...