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Structural and functional characterization of three DsbA paralogues from Salmonella enterica serovar typhimurium.
- Source :
-
The Journal of biological chemistry [J Biol Chem] 2010 Jun 11; Vol. 285 (24), pp. 18423-32. Date of Electronic Publication: 2010 Mar 16. - Publication Year :
- 2010
-
Abstract
- In prototypic Escherichia coli K-12 the introduction of disulfide bonds into folding proteins is mediated by the Dsb family of enzymes, primarily through the actions of the highly oxidizing protein EcDsbA. Homologues of the Dsb catalysts are found in most bacteria. Interestingly, pathogens have developed distinct Dsb machineries that play a pivotal role in the biogenesis of virulence factors, hence contributing to their pathogenicity. Salmonella enterica serovar (sv.) Typhimurium encodes an extended number of sulfhydryl oxidases, namely SeDsbA, SeDsbL, and SeSrgA. Here we report a comprehensive analysis of the sv. Typhimurium thiol oxidative system through the structural and functional characterization of the three Salmonella DsbA paralogues. The three proteins share low sequence identity, which results in several unique three-dimensional characteristics, principally in areas involved in substrate binding and disulfide catalysis. Furthermore, the Salmonella DsbA-like proteins also have different redox properties. Whereas functional characterization revealed some degree of redundancy, the properties of SeDsbA, SeDsbL, and SeSrgA and their expression pattern in sv. Typhimurium indicate a diverse role for these enzymes in virulence.
- Subjects :
- Amino Acid Sequence
Disulfides chemistry
Escherichia coli metabolism
Glutathione chemistry
Molecular Sequence Data
Oxidation-Reduction
Oxidative Stress
Oxidoreductases chemistry
Protein Conformation
Protein Folding
Protein Structure, Secondary
Sequence Homology, Amino Acid
X-Ray Diffraction
Escherichia coli Proteins metabolism
Oxidoreductases Acting on Sulfur Group Donors chemistry
Protein Disulfide-Isomerases metabolism
Salmonella typhimurium metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1083-351X
- Volume :
- 285
- Issue :
- 24
- Database :
- MEDLINE
- Journal :
- The Journal of biological chemistry
- Publication Type :
- Academic Journal
- Accession number :
- 20233716
- Full Text :
- https://doi.org/10.1074/jbc.M110.101360