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Crystal structure of DsbDγ reveals the mechanism of redox potential shift and substrate specificity1
- Source :
- FEBS Letters. 543:164-169
- Publication Year :
- 2003
- Publisher :
- Wiley, 2003.
-
Abstract
- The Escherichia coli transmembrane protein DsbD transfers electrons from the cytoplasm to the periplasm through a cascade of thiol-disulfide exchange reactions. In this process, the C-terminal periplasmic domain of DsbD (DsbDgamma) shuttles the reducing potential from the membrane domain (DsbDbeta) to the N-terminal periplasmic domain (DsbDalpha). The crystal structure of DsbDgamma determined at 1.9 A resolution reveals that the domain has a thioredoxin fold with an extended N-terminal stretch. In comparison to thioredoxin, the DsbDgamma structure exhibits the stabilized active site conformation and the extended active site alpha2 helix that explain the domain's substrate specificity and the redox potential shift, respectively. The hypothetical model of the DsbDgamma:DsbDalpha complex based on the DsbDgamma structure and previous structural studies indicates that the conserved hydrophobic residue in the C-X-X-C motif of DsbDgamma may be important in the specific recognition of DsbDalpha.
- Subjects :
- Models, Molecular
Molecular Sequence Data
Protein Disulfide-Isomerases
Biophysics
Crystallography, X-Ray
Thioredoxin fold
Biochemistry
Redox
Substrate Specificity
Electron transfer
Structural Biology
Oxidoreductase
Genetics
Amino Acid Sequence
Molecular Biology
chemistry.chemical_classification
Binding Sites
biology
Chemistry
Escherichia coli Proteins
Active site
Cell Biology
Periplasmic space
Transmembrane protein
Protein Structure, Tertiary
Crystallography
biology.protein
Thioredoxin
Oxidation-Reduction
Sequence Alignment
Subjects
Details
- ISSN :
- 00145793
- Volume :
- 543
- Database :
- OpenAIRE
- Journal :
- FEBS Letters
- Accession number :
- edsair.doi.dedup.....691c8250987c985410b4f2ff4ffe8801