Ten years ago it was thought that disulphide bond formation in prokaryotes occurred spontaneously. Now two pathways involved in disulphide bond formation have been well characterized, the oxidative pathway, which is responsible for the formation of disulphides, and the isomerization pathway, which shuffles incorrectly formed disulphides. Disulphide bonds are donated directly to unfolded polypeptides by the DsbA protein; DsbA is reoxidized by DsbB. DsbB generates disulphides de novo from oxidized quinones. These quinones are reoxidized by the electron transport chain, showing that disulphide bond formation is actually driven by electron transport. Disulphide isomerization requires that incorrect disulphides be attacked using a reduced cataly...
Abstract Protein folding of outer membrane and secreted proteins, including receptors, cytokines and...
The Escherichia coli periplasmic protein DsbC is active both in vivo and in vitro as a protein disul...
Oxidative folding is the simultaneous process of forming disulphide bonds and native structure in pr...
Ten years ago it was thought that disulphide bond formation in prokaryotes occurred spontaneously. N...
The discovery of the oxidoreductase disulfide bond protein A (DsbA) in 1991 opened the way to the un...
In Escherichia coli, DsbA introduces disulphide bonds into secreted proteins. DsbA is recycled by Ds...
AbstractDisulfide bond formation is catalyzed in vivo by DsbA and DsbB. Here we reconstitute this ox...
The identification of protein disulfide isomerase (PDI), almost 50 years ago, opened the way to the ...
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...
The formation of a disulfide bond results from the oxidation of two cysteine thiol groups, with the ...
AbstractDisulfide bond formation is a catalyzed process in vivo. In prokaryotes, the oxidation of cy...
Isomerization of disulfide bonds is vital for the proper folding of proteins that possess multiple d...
The biological kingdoms have evolved elaborate systems that ensure the catalysis of protein disulfid...
Biochemical studies have shown that the periplasmic protein disulfide oxidoreductase DsbC can isomer...
Abstract Protein folding of outer membrane and secreted proteins, including receptors, cytokines and...
The Escherichia coli periplasmic protein DsbC is active both in vivo and in vitro as a protein disul...
Oxidative folding is the simultaneous process of forming disulphide bonds and native structure in pr...
Ten years ago it was thought that disulphide bond formation in prokaryotes occurred spontaneously. N...
The discovery of the oxidoreductase disulfide bond protein A (DsbA) in 1991 opened the way to the un...
In Escherichia coli, DsbA introduces disulphide bonds into secreted proteins. DsbA is recycled by Ds...
AbstractDisulfide bond formation is catalyzed in vivo by DsbA and DsbB. Here we reconstitute this ox...
The identification of protein disulfide isomerase (PDI), almost 50 years ago, opened the way to the ...
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...
The formation of a disulfide bond results from the oxidation of two cysteine thiol groups, with the ...
AbstractDisulfide bond formation is a catalyzed process in vivo. In prokaryotes, the oxidation of cy...
Isomerization of disulfide bonds is vital for the proper folding of proteins that possess multiple d...
The biological kingdoms have evolved elaborate systems that ensure the catalysis of protein disulfid...
Biochemical studies have shown that the periplasmic protein disulfide oxidoreductase DsbC can isomer...
Abstract Protein folding of outer membrane and secreted proteins, including receptors, cytokines and...
The Escherichia coli periplasmic protein DsbC is active both in vivo and in vitro as a protein disul...
Oxidative folding is the simultaneous process of forming disulphide bonds and native structure in pr...