To survive and colonise their various environments, including those used during infection, bacteria have developed a variety of adaptive systems. Amongst these is phage shock protein (Psp) response, which can be induced in Escherichia coli upon filamentous phage infection (specifically phage secretin pIV) and by other membrane-damaging agents. The E. coli Psp system comprises seven proteins, of which PspA is the central component. PspA is a bifunctional protein that is directly involved in (i) the negative regulation of the psp-specific transcriptional activator PspF and (ii) the maintenance of membrane integrity in a mechanism proposed to involve the formation of a 36-mer ring complex. Here we established that the PspA negative regulation ...
The phage-shock-protein (psp) operon helps to ensure survival of Escherichia coli in tate stationary...
The phage shock protein (psp) operon (pspABCE) of Escherichia coli is strongly induced in response t...
Bacteria have successfully colonized various hostile environments by evolving stress response mech...
AbstractTo survive and colonise their various environments, including those used during infection, b...
The phage-shock-protein (Psp) response maintains the proton-motive force (pmf) under extracytoplasmi...
AbstractBacterial enhancer binding proteins (bEBPs) are a subclass of the AAA+ (ATPases Associated w...
The 25.3 kDa "adaptor" protein, PspA (dphage shock protein A), is found in the cytoplasm and in asso...
The phage shock protein operon (pspABCDE) of Escherichia coli is strongly up-regulated in response t...
The phage shock protein (Psp) response in Gram-negative bacteria counteracts membrane stress. Transc...
The phage shock protein (Psp) systems found in bacteria, archaea and higher plants respond to extrac...
PspA is a key component of the bacterial Psp membrane-stress response system. The biochemical and fu...
PspA is a key component of the bacterial Psp membrane-stress response system. The biochemical and fu...
The phage shock protein (Psp) response is found in many Gram-negative enterobacteria, where it help...
The bacterial phage shock protein (Psp) response functions to help cells manage the impacts of agent...
Expression of the pspABCDE operon of Escherichia coli is induced upon infection by filamentous phage...
The phage-shock-protein (psp) operon helps to ensure survival of Escherichia coli in tate stationary...
The phage shock protein (psp) operon (pspABCE) of Escherichia coli is strongly induced in response t...
Bacteria have successfully colonized various hostile environments by evolving stress response mech...
AbstractTo survive and colonise their various environments, including those used during infection, b...
The phage-shock-protein (Psp) response maintains the proton-motive force (pmf) under extracytoplasmi...
AbstractBacterial enhancer binding proteins (bEBPs) are a subclass of the AAA+ (ATPases Associated w...
The 25.3 kDa "adaptor" protein, PspA (dphage shock protein A), is found in the cytoplasm and in asso...
The phage shock protein operon (pspABCDE) of Escherichia coli is strongly up-regulated in response t...
The phage shock protein (Psp) response in Gram-negative bacteria counteracts membrane stress. Transc...
The phage shock protein (Psp) systems found in bacteria, archaea and higher plants respond to extrac...
PspA is a key component of the bacterial Psp membrane-stress response system. The biochemical and fu...
PspA is a key component of the bacterial Psp membrane-stress response system. The biochemical and fu...
The phage shock protein (Psp) response is found in many Gram-negative enterobacteria, where it help...
The bacterial phage shock protein (Psp) response functions to help cells manage the impacts of agent...
Expression of the pspABCDE operon of Escherichia coli is induced upon infection by filamentous phage...
The phage-shock-protein (psp) operon helps to ensure survival of Escherichia coli in tate stationary...
The phage shock protein (psp) operon (pspABCE) of Escherichia coli is strongly induced in response t...
Bacteria have successfully colonized various hostile environments by evolving stress response mech...