Viability and pathogenicity of Gram-negative bacteria is linked to the cytochrome c maturation and the oxidative protein folding systems in the periplasm. The transmembrane reductant conductor DsbD is a unique protein which provides the necessary reducing power to both systems through thiol-disulfide exchange reactions in a complex network of protein-protein interactions. The N-terminal domain of DsbD (nDsbD) is the delivery point of the reducing power originating from cytoplasmic thioredoxin to a variety of periplasmic partners. Here we report (1)H, (13)C and (15)N assignments for resonances of nDsbD in its oxidized and reduced states. These assignments provide the starting point for detailed investigations of the interactions of nDsbD wit...
The membrane protein DsbD is a reductase that acts as an electron hub, translocating reducing equiva...
DsbD from Escherichia coli catalyzes the transport of electrons from cytoplasmic thioredoxin to the ...
International audienceWe report the nearly complete 1H, 13C, and 15N resonance assignments of the C1...
Viability and pathogenicity of Gram-negative bacteria is linked to the cytochrome c maturation and t...
AbstractThe Escherichia coli transmembrane protein DsbD transfers electrons from the cytoplasm to th...
The periplasmic C-terminal domain of the Escherichia coli DsbD protein (cDsbD) has a thioredoxin fol...
Abstract.: DsbD is a redox-active protein of the inner Escherichia coli membrane possessing an N-ter...
Bacterial growth and pathogenicity depend on the correct formation of disulfide bonds, a process con...
AbstractThe cytoplasmic membrane protein DsbD transfers electrons from the cytoplasm to the periplas...
The bacterial protein DsbD transfers reductant from the cytoplasm to the otherwise oxidizing environ...
Macromolecular transitions such as conformational changes and protein-protein association underlie m...
SummaryDsbD from Escherichia coli transports two electrons from cytoplasmic thioredoxin to the perip...
Isomerization of disulfide bonds is vital for the proper folding of proteins that possess multiple d...
The Escherichia coli periplasmic protein DsbC is active both in vivo and in vitro as a protein disul...
ABSTRACT The Escherichia coli membrane protein DsbD functions as an electron hub that dispatches ele...
The membrane protein DsbD is a reductase that acts as an electron hub, translocating reducing equiva...
DsbD from Escherichia coli catalyzes the transport of electrons from cytoplasmic thioredoxin to the ...
International audienceWe report the nearly complete 1H, 13C, and 15N resonance assignments of the C1...
Viability and pathogenicity of Gram-negative bacteria is linked to the cytochrome c maturation and t...
AbstractThe Escherichia coli transmembrane protein DsbD transfers electrons from the cytoplasm to th...
The periplasmic C-terminal domain of the Escherichia coli DsbD protein (cDsbD) has a thioredoxin fol...
Abstract.: DsbD is a redox-active protein of the inner Escherichia coli membrane possessing an N-ter...
Bacterial growth and pathogenicity depend on the correct formation of disulfide bonds, a process con...
AbstractThe cytoplasmic membrane protein DsbD transfers electrons from the cytoplasm to the periplas...
The bacterial protein DsbD transfers reductant from the cytoplasm to the otherwise oxidizing environ...
Macromolecular transitions such as conformational changes and protein-protein association underlie m...
SummaryDsbD from Escherichia coli transports two electrons from cytoplasmic thioredoxin to the perip...
Isomerization of disulfide bonds is vital for the proper folding of proteins that possess multiple d...
The Escherichia coli periplasmic protein DsbC is active both in vivo and in vitro as a protein disul...
ABSTRACT The Escherichia coli membrane protein DsbD functions as an electron hub that dispatches ele...
The membrane protein DsbD is a reductase that acts as an electron hub, translocating reducing equiva...
DsbD from Escherichia coli catalyzes the transport of electrons from cytoplasmic thioredoxin to the ...
International audienceWe report the nearly complete 1H, 13C, and 15N resonance assignments of the C1...