The unfolded protein response of Escherichia coli is triggered by the accumulation of unassembled outer membrane proteins (OMPs) in the cellular envelope. The PDZ-protease DegS recognizes these mislocalized OMPs and initiates a proteolytic cascade that ultimately leads to the σE-driven expression of a variety of factors dealing with folding stress in the periplasm and OMP assembly. The general features of how OMPs activate the protease function of DegS have not yet been systematically addressed. Furthermore, it is unknown how the PDZ domain keeps the protease inactive in the resting state, which is of crucial importance for the functioning of the entire σE stress response. Here we show in atomic detail how DegS is able to integrate the info...
In the E. coli periplasm, C-terminal peptides of misfolded outer-membrane porins (OMPs) bind to the ...
AbstractDegS, the periplasmic stress sensor, becomes activated when its PDZ domain recognizes the im...
In E. coli, outer-membrane stress causes a transcriptional response through a signaling cascade init...
SummaryRegulated intramembrane proteolysis is a method for transducing signals between cellular comp...
AbstractTransmembrane signaling between intracellular compartments is often controlled by regulated ...
In Gram-negative bacteria, envelope stress signals such as unfolded outer membrane proteins (OMP) ac...
Gram-negative bacteria respond to misfolded proteins in the cell envelope with the σE-driven expres...
AbstractGram-negative bacteria respond to misfolded proteins in the cell envelope with the σE-driven...
The PDZ domains of the trimeric DegS protease bind unassembled outer-membrane proteins (OMPs) that a...
AbstractThe accumulation of misfolded porins in the periplasm of bacteria triggers a proteolytic cas...
Escherichia coli senses envelope stress using a signaling cascade initiated when DegS cleaves a tran...
SummaryIn the E. coli periplasm, C-terminal peptides of misfolded outer-membrane porins (OMPs) bind ...
Bacterial DegS is a regulatory protease that acts as a molecular stress sensor and initiates a perip...
Upon sensing misfolded outer-membrane porins (OMPs) in the periplasm, the E. coli DegS protease clea...
AbstractRegulated proteolysis is a key event in transmembrane signalling between intracellular compa...
In the E. coli periplasm, C-terminal peptides of misfolded outer-membrane porins (OMPs) bind to the ...
AbstractDegS, the periplasmic stress sensor, becomes activated when its PDZ domain recognizes the im...
In E. coli, outer-membrane stress causes a transcriptional response through a signaling cascade init...
SummaryRegulated intramembrane proteolysis is a method for transducing signals between cellular comp...
AbstractTransmembrane signaling between intracellular compartments is often controlled by regulated ...
In Gram-negative bacteria, envelope stress signals such as unfolded outer membrane proteins (OMP) ac...
Gram-negative bacteria respond to misfolded proteins in the cell envelope with the σE-driven expres...
AbstractGram-negative bacteria respond to misfolded proteins in the cell envelope with the σE-driven...
The PDZ domains of the trimeric DegS protease bind unassembled outer-membrane proteins (OMPs) that a...
AbstractThe accumulation of misfolded porins in the periplasm of bacteria triggers a proteolytic cas...
Escherichia coli senses envelope stress using a signaling cascade initiated when DegS cleaves a tran...
SummaryIn the E. coli periplasm, C-terminal peptides of misfolded outer-membrane porins (OMPs) bind ...
Bacterial DegS is a regulatory protease that acts as a molecular stress sensor and initiates a perip...
Upon sensing misfolded outer-membrane porins (OMPs) in the periplasm, the E. coli DegS protease clea...
AbstractRegulated proteolysis is a key event in transmembrane signalling between intracellular compa...
In the E. coli periplasm, C-terminal peptides of misfolded outer-membrane porins (OMPs) bind to the ...
AbstractDegS, the periplasmic stress sensor, becomes activated when its PDZ domain recognizes the im...
In E. coli, outer-membrane stress causes a transcriptional response through a signaling cascade init...