ABSTRACT Disulfide bond formation is required for the folding of many bacterial virulence factors. However, whereas the Escherichia coli disulfide bond-forming system is well characterized, not much is known on the pathways that oxidatively fold proteins in pathogenic bacteria. Here, we report the detailed unraveling of the pathway that introduces disulfide bonds in the periplasm of the human pathogen Pseudomonas aeruginosa. The genome of P. aeruginosa uniquely encodes two DsbA proteins (P. aeruginosa DsbA1 [PaDsbA1] and PaDsbA2) and two DsbB proteins (PaDsbB1 and PaDsbB2). We found that PaDsbA1, the primary donor of disulfide bonds to secreted proteins, is maintained oxidized in vivo by both PaDsbB1 and PaDsbB2. In vitro reconstitution of ...
Disulfide bond (DSB) formation is catalyzed by disulfide bond proteins and is critical for the prope...
At a time when the antibiotic drug discovery pipeline has stalled, antibiotic resistance is accelera...
At a time when the antibiotic drug discovery pipeline has stalled, antibiotic resistance is accelera...
International audienceDisulfide bond formation is required for the folding of many bacterial virulen...
Bacterial antibiotic resistance is an emerging global crisis, and treatment of multidrug-resistant g...
The discovery of the oxidoreductase disulfide bond protein A (DsbA) in 1991 opened the way to the un...
Disulfide bond isomerase proteins (Dsbs) have been extensively characterized in gram-negative bacter...
Disulfide bonds are important for the stability of many secreted proteins. These covalent linkages, ...
Ten years ago it was thought that disulphide bond formation in prokaryotes occurred spontaneously. N...
Since its discovery in 1991, the bacterial periplasmic oxidative folding catalyst DsbA has been the ...
The a-proteobacterium Wolbachia pipientis infects more than 65 % of insect species worldwide and man...
The disulfide bond (DSB) forming system and in particular DsbA, is a key bacterial oxidative folding...
Disulfide bond (DSB) formation is catalyzed by disulfide bond proteins and is critical for the prope...
In Gram-negative bacteria, the introduction of disulfide bonds into folding proteins occurs in the p...
The α-proteobacterium Wolbachia pipientis infects more than 65% of insect species worldwide and mani...
Disulfide bond (DSB) formation is catalyzed by disulfide bond proteins and is critical for the prope...
At a time when the antibiotic drug discovery pipeline has stalled, antibiotic resistance is accelera...
At a time when the antibiotic drug discovery pipeline has stalled, antibiotic resistance is accelera...
International audienceDisulfide bond formation is required for the folding of many bacterial virulen...
Bacterial antibiotic resistance is an emerging global crisis, and treatment of multidrug-resistant g...
The discovery of the oxidoreductase disulfide bond protein A (DsbA) in 1991 opened the way to the un...
Disulfide bond isomerase proteins (Dsbs) have been extensively characterized in gram-negative bacter...
Disulfide bonds are important for the stability of many secreted proteins. These covalent linkages, ...
Ten years ago it was thought that disulphide bond formation in prokaryotes occurred spontaneously. N...
Since its discovery in 1991, the bacterial periplasmic oxidative folding catalyst DsbA has been the ...
The a-proteobacterium Wolbachia pipientis infects more than 65 % of insect species worldwide and man...
The disulfide bond (DSB) forming system and in particular DsbA, is a key bacterial oxidative folding...
Disulfide bond (DSB) formation is catalyzed by disulfide bond proteins and is critical for the prope...
In Gram-negative bacteria, the introduction of disulfide bonds into folding proteins occurs in the p...
The α-proteobacterium Wolbachia pipientis infects more than 65% of insect species worldwide and mani...
Disulfide bond (DSB) formation is catalyzed by disulfide bond proteins and is critical for the prope...
At a time when the antibiotic drug discovery pipeline has stalled, antibiotic resistance is accelera...
At a time when the antibiotic drug discovery pipeline has stalled, antibiotic resistance is accelera...