AbstractAll organisms possess specific cellular machinery that introduces disulfide bonds into proteins newly synthesized and transported out of the cytosol. In E. coli, the membrane-integrated DsbB protein cooperates with ubiquinone to generate a disulfide bond, which is transferred to DsbA, a periplasmic dithiol oxido-reductase that serves as the direct disulfide bond donor to proteins folding oxidatively in this compartment. Despite the extensive accumulation of knowledge on this oxidation system, molecular details of the DsbB reaction mechanisms had been controversial due partly to the lack of structural information until our recent determination of the crystal structure of a DsbA–DsbB–ubiquinone complex. In this review we discuss the s...
AbstractDisulfide bond formation is a critical step in the folding of many secretory proteins. In ba...
The formation of a disulfide bond results from the oxidation of two cysteine thiol groups, with the ...
AbstractGenetic studies have recently identified DsbG, a new member of the dsb group of redox protei...
SummaryOxidation of cysteine pairs to disulfide requires cellular factors present in the bacterial p...
SummaryOxidation of cysteine pairs to disulfide requires cellular factors present in the bacterial p...
AbstractDisulfide bond formation is a critical step in the folding of many secretory proteins. In ba...
AbstractDisulfide bond formation is a catalyzed process in vivo. In prokaryotes, the oxidation of cy...
A repeating theme in the structural biology of disulfide oxidants and isomerases is the extraordinar...
AbstractDisulfide bond formation is catalyzed in vivo by DsbA and DsbB. Here we reconstitute this ox...
Disulfide bonds are an important post-translational modification that provides stability for many pr...
Ten years ago it was thought that disulphide bond formation in prokaryotes occurred spontaneously. N...
The DsbA-DsbB pathway is responsible for catalyzing de novo disulfide formation. DsbA is a thioredox...
The DsbA-DsbB pathway is responsible for catalyzing de novo disulfide formation. DsbA is a thioredox...
Correct formation of disulfide bonds is critical for protein folding. We find that cells lacking pro...
The discovery of the oxidoreductase disulfide bond protein A (DsbA) in 1991 opened the way to the un...
AbstractDisulfide bond formation is a critical step in the folding of many secretory proteins. In ba...
The formation of a disulfide bond results from the oxidation of two cysteine thiol groups, with the ...
AbstractGenetic studies have recently identified DsbG, a new member of the dsb group of redox protei...
SummaryOxidation of cysteine pairs to disulfide requires cellular factors present in the bacterial p...
SummaryOxidation of cysteine pairs to disulfide requires cellular factors present in the bacterial p...
AbstractDisulfide bond formation is a critical step in the folding of many secretory proteins. In ba...
AbstractDisulfide bond formation is a catalyzed process in vivo. In prokaryotes, the oxidation of cy...
A repeating theme in the structural biology of disulfide oxidants and isomerases is the extraordinar...
AbstractDisulfide bond formation is catalyzed in vivo by DsbA and DsbB. Here we reconstitute this ox...
Disulfide bonds are an important post-translational modification that provides stability for many pr...
Ten years ago it was thought that disulphide bond formation in prokaryotes occurred spontaneously. N...
The DsbA-DsbB pathway is responsible for catalyzing de novo disulfide formation. DsbA is a thioredox...
The DsbA-DsbB pathway is responsible for catalyzing de novo disulfide formation. DsbA is a thioredox...
Correct formation of disulfide bonds is critical for protein folding. We find that cells lacking pro...
The discovery of the oxidoreductase disulfide bond protein A (DsbA) in 1991 opened the way to the un...
AbstractDisulfide bond formation is a critical step in the folding of many secretory proteins. In ba...
The formation of a disulfide bond results from the oxidation of two cysteine thiol groups, with the ...
AbstractGenetic studies have recently identified DsbG, a new member of the dsb group of redox protei...