AbstractDsbA is a periplasmic, disulfide bond formation factor of E. coli. We studied in vivo redox states of its active site cysteines. When periplasmic contents were prepared from iodoacetic acid-treated cells, according to the previously published procedures, variable but major proportions of DsbA were in the reduced form. We found that this was due to an artificial reduction that occurred after cell disruption; even purified and oxidized DsbA underwent reduction when incubated with cell extracts in the absence of any added reducing agent. Such DsbA-reducing activities were detected in both the periplasmic and the cytoplasmic fractions. To circumvent the artifact, we analyzed redox states of DsbA under denaturing conditions. Now virtuall...
One of the last unsolved problems of molecular biology is how the sequential amino acid information ...
<div><p>(A) Colored overlay of the stained 2D gel (shown in green) and the phosphor image (shown in ...
Current dogma dictates that bacterial proteins with misoxidized disulfide bonds are shuffled into co...
AbstractDsbA is a periplasmic, disulfide bond formation factor of E. coli. We studied in vivo redox ...
AbstractGenetic studies have recently identified DsbG, a new member of the dsb group of redox protei...
AbstractAll organisms possess specific cellular machinery that introduces disulfide bonds into prote...
SummaryOxidation of cysteine pairs to disulfide requires cellular factors present in the bacterial p...
The formation of a disulfide bond results from the oxidation of two cysteine thiol groups, with the ...
AbstractHeme attachment to c-type cytochromes in bacteria requires cysteine thiols in the CXXCH moti...
Since its discovery in 1991, the bacterial periplasmic oxidative folding catalyst DsbA has been the ...
The discovery of the oxidoreductase disulfide bond protein A (DsbA) in 1991 opened the way to the un...
AbstractDsbA, a member of the thioredoxin family of disulfide oxidoreductases, acts in catalyzing di...
The Escherichia coli periplasmic protein DsbC is active both in vivo and in vitro as a protein disul...
Disulfide bonds are an important post-translational modification that provides stability for many pr...
AbstractDisulfide bond formation is a catalyzed process in vivo. In prokaryotes, the oxidation of cy...
One of the last unsolved problems of molecular biology is how the sequential amino acid information ...
<div><p>(A) Colored overlay of the stained 2D gel (shown in green) and the phosphor image (shown in ...
Current dogma dictates that bacterial proteins with misoxidized disulfide bonds are shuffled into co...
AbstractDsbA is a periplasmic, disulfide bond formation factor of E. coli. We studied in vivo redox ...
AbstractGenetic studies have recently identified DsbG, a new member of the dsb group of redox protei...
AbstractAll organisms possess specific cellular machinery that introduces disulfide bonds into prote...
SummaryOxidation of cysteine pairs to disulfide requires cellular factors present in the bacterial p...
The formation of a disulfide bond results from the oxidation of two cysteine thiol groups, with the ...
AbstractHeme attachment to c-type cytochromes in bacteria requires cysteine thiols in the CXXCH moti...
Since its discovery in 1991, the bacterial periplasmic oxidative folding catalyst DsbA has been the ...
The discovery of the oxidoreductase disulfide bond protein A (DsbA) in 1991 opened the way to the un...
AbstractDsbA, a member of the thioredoxin family of disulfide oxidoreductases, acts in catalyzing di...
The Escherichia coli periplasmic protein DsbC is active both in vivo and in vitro as a protein disul...
Disulfide bonds are an important post-translational modification that provides stability for many pr...
AbstractDisulfide bond formation is a catalyzed process in vivo. In prokaryotes, the oxidation of cy...
One of the last unsolved problems of molecular biology is how the sequential amino acid information ...
<div><p>(A) Colored overlay of the stained 2D gel (shown in green) and the phosphor image (shown in ...
Current dogma dictates that bacterial proteins with misoxidized disulfide bonds are shuffled into co...