Disulfide bonds are an important post-translational modification that provides stability for many proteins. In the bacterium Escherichia coli, oxidative protein folding is carried out in the periplasm by the thiol-disulfide oxidoreductase proteins. The thiol disulfide oxidoreductase DsbA is responsible for the initial generation of disulfide bonds into oxidatively folding proteins. DsbA is maintained in a catalytic oxidized state by the inner membrane protein DsbB, which channels electrons from DsbA to the electron transport chain through quinone reduction. My plan was to investigate if mutation and selection/screening could generate possible substitutes for the normal disulfide formation pathway. This may provide insight into what minimal ...
We have engineered a pathway for the formation of disulfide bonds. By imposing evolutionary pressure...
AbstractDisulfide bond formation is a catalyzed process in vivo. In prokaryotes, the oxidation of cy...
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...
The formation of a disulfide bond results from the oxidation of two cysteine thiol groups, with the ...
Correct formation of disulfide bonds is critical for protein folding. We find that cells lacking pro...
The Escherichia coli periplasmic protein DsbC is active both in vivo and in vitro as a protein disul...
The discovery of the oxidoreductase disulfide bond protein A (DsbA) in 1991 opened the way to the un...
In Escherichia coli, the Dsb family of thiol-disulfide oxidoreductases catalyzes disulfide bond form...
In Escherichia coli, the Dsb family of thiol-disulfide oxidoreductases catalyzes disulfide bond form...
textBacterial proteins do not contain more than one or two of disulfide bonds in their native struct...
textMany commercially important proteins contain disulfide bonds, i.e. covalent linkages joining th...
textMany commercially important proteins contain disulfide bonds, i.e. covalent linkages joining th...
textBacterial proteins do not contain more than one or two of disulfide bonds in their native struct...
AbstractAll organisms possess specific cellular machinery that introduces disulfide bonds into prote...
We have engineered a pathway for the formation of disulfide bonds. By imposing evolutionary pressure...
AbstractDisulfide bond formation is a catalyzed process in vivo. In prokaryotes, the oxidation of cy...
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...
The formation of a disulfide bond results from the oxidation of two cysteine thiol groups, with the ...
Correct formation of disulfide bonds is critical for protein folding. We find that cells lacking pro...
The Escherichia coli periplasmic protein DsbC is active both in vivo and in vitro as a protein disul...
The discovery of the oxidoreductase disulfide bond protein A (DsbA) in 1991 opened the way to the un...
In Escherichia coli, the Dsb family of thiol-disulfide oxidoreductases catalyzes disulfide bond form...
In Escherichia coli, the Dsb family of thiol-disulfide oxidoreductases catalyzes disulfide bond form...
textBacterial proteins do not contain more than one or two of disulfide bonds in their native struct...
textMany commercially important proteins contain disulfide bonds, i.e. covalent linkages joining th...
textMany commercially important proteins contain disulfide bonds, i.e. covalent linkages joining th...
textBacterial proteins do not contain more than one or two of disulfide bonds in their native struct...
AbstractAll organisms possess specific cellular machinery that introduces disulfide bonds into prote...
We have engineered a pathway for the formation of disulfide bonds. By imposing evolutionary pressure...
AbstractDisulfide bond formation is a catalyzed process in vivo. In prokaryotes, the oxidation of cy...
The biological kingdoms have evolved elaborate systems that ensure the catalysis of protein disulfid...