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Cloning, expression, purification and characterization of a DsbA-like protein from Wolbachia pipientis
Authors:Kurz Mareike  Iturbe-Ormaetxe Iñaki  Jarrott Russell  Cowieson Nathan  Robin Gautier  Jones Alun  King Gordon J  Frei Patrick  Glockshuber Rudi  O'Neill Scott L  Heras Begoña  Martin Jennifer L
Affiliation:aInstitute for Molecular Bioscience, The University of Queensland, Brisbane, Qld 4072, Australia;bSchool of Integrative Biology, The University of Queensland, Brisbane, Qld 4072, Australia;cARC Special Research Centre for Functional and Applied Genomics, The University of Queensland, Brisbane, Qld 4072, Australia;dInstitute for Microbiology, ETH Zürich, CH-8092, Zürich, Switzerland
Abstract:Wolbachia pipientis are obligate endosymbionts that infect a wide range of insect and other arthropod species. They act as reproductive parasites by manipulating the host reproduction machinery to enhance their own transmission. This unusual phenotype is thought to be a consequence of the actions of secreted Wolbachia proteins that are likely to contain disulfide bonds to stabilize the protein structure. In bacteria, the introduction or isomerization of disulfide bonds in proteins is catalyzed by Dsb proteins. The Wolbachia genome encodes two proteins, α-DsbA1 and α-DsbA2, that might catalyze these steps. In this work we focussed on the 234 residue protein α-DsbA1; the gene was cloned and expressed in Escherichia coli, the protein was purified and its identity confirmed by mass spectrometry. The sequence identity of α-DsbA1 for both dithiol oxidants (E. coli DsbA, 12%) and disulfide isomerases (E. coli DsbC, 14%) is similar. We therefore sought to establish whether α-DsbA1 is an oxidant or an isomerase based on functional activity. The purified α-DsbA1 was active in an oxidoreductase assay but had little isomerase activity, indicating that α-DsbA1 is DsbA-like rather than DsbC-like. This work represents the first successful example of the characterization of a recombinant Wolbachia protein. Purified α-DsbA1 will now be used in further functional studies to identify protein substrates that could help explain the molecular basis for the unusual Wolbachia phenotypes, and in structural studies to explore its relationship to other disulfide oxidoreductase proteins.
Keywords:Oxidoreductase   α  -Proteobacteria   Protein disulfide oxidant
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