SurA is a conserved ATP-independent periplasmic chaperone involved in the biogenesis of outer-membrane proteins (OMPs). Escherichia coli SurA has a core domain and two peptidylprolyl isomerase (PPIase) domains, the role(s) of which remain unresolved. Here we show that while SurA homologues in early proteobacteria typically contain one or no PPIase domains, the presence of two PPIase domains is common in SurA in later proteobacteria, implying an evolutionary advantage for this domain architecture. Bioinformatics analysis of > 350,000 OMP sequences showed that their length, hydrophobicity and aggregation propensity are similar across the proteobacterial classes, ruling out a simple correlation between SurA domain architecture and these proper...
AbstractSurA is a periplasmic chaperone protein that facilitates maturation of integral outer membra...
AbstractAlthough many periplasmic folding factors have been identified, the mechanisms by which they...
Gram-negative bacteria have a multicomponent and constitutively active periplasmic chaperone system ...
Outer membrane proteins (OMPs) of Gram-negative bacteria travel from their site of synthesis in the ...
The periplasmic chaperone SurA plays a key role in outer membrane protein (OMP) biogenesis. E. coli ...
SurA is the conserved major chaperone of outer membrane protein (OMP) biogenesis in the periplasm of...
ABSTRACT SurA is a component of the periplasmic chaperone network that plays a central role in bioge...
AbstractThe SurA protein facilitates correct folding of outer membrane proteins in gram-negative bac...
Background: The inner membrane-anchored periplasmic folding factor PpiD is described as a parvulin-l...
β-Barrel proteins, or outer membrane proteins (OMPs), perform many essential functions in Gram-negat...
The biogenesis of outer-membrane proteins (OMPs) in gram-negative bacteria involves delivery by peri...
Little is known on how beta-barrel proteins are assembled in the outer membrane (OM) of Gram-negativ...
SurA is a periplasmic peptidyl-prolyl isomerase (PPIase) and chaperone of Escherichia coli and other...
Correct folding of outer membrane proteins (OMPs) into the outer membrane of Gram-negative bacteria ...
Outer membrane proteins (OMPs) of Gram-negative bacteria are synthesized in the cytosol and must cro...
AbstractSurA is a periplasmic chaperone protein that facilitates maturation of integral outer membra...
AbstractAlthough many periplasmic folding factors have been identified, the mechanisms by which they...
Gram-negative bacteria have a multicomponent and constitutively active periplasmic chaperone system ...
Outer membrane proteins (OMPs) of Gram-negative bacteria travel from their site of synthesis in the ...
The periplasmic chaperone SurA plays a key role in outer membrane protein (OMP) biogenesis. E. coli ...
SurA is the conserved major chaperone of outer membrane protein (OMP) biogenesis in the periplasm of...
ABSTRACT SurA is a component of the periplasmic chaperone network that plays a central role in bioge...
AbstractThe SurA protein facilitates correct folding of outer membrane proteins in gram-negative bac...
Background: The inner membrane-anchored periplasmic folding factor PpiD is described as a parvulin-l...
β-Barrel proteins, or outer membrane proteins (OMPs), perform many essential functions in Gram-negat...
The biogenesis of outer-membrane proteins (OMPs) in gram-negative bacteria involves delivery by peri...
Little is known on how beta-barrel proteins are assembled in the outer membrane (OM) of Gram-negativ...
SurA is a periplasmic peptidyl-prolyl isomerase (PPIase) and chaperone of Escherichia coli and other...
Correct folding of outer membrane proteins (OMPs) into the outer membrane of Gram-negative bacteria ...
Outer membrane proteins (OMPs) of Gram-negative bacteria are synthesized in the cytosol and must cro...
AbstractSurA is a periplasmic chaperone protein that facilitates maturation of integral outer membra...
AbstractAlthough many periplasmic folding factors have been identified, the mechanisms by which they...
Gram-negative bacteria have a multicomponent and constitutively active periplasmic chaperone system ...