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A novel member of the protein disulfide oxidoreductase family from Aeropyrum pernix K1: structure, function and electrostatics
Authors:D'Ambrosio Katia  Pedone Emilia  Langella Emma  De Simone Giuseppina  Rossi Mosè  Pedone Carlo  Bartolucci Simonetta
Institution:Istituto di Biostrutture e Bioimmagini, C.N.R., Napoli, Italy.
Abstract:The formation of disulfide bonds between cysteine residues is a rate-limiting step in protein folding. To control this oxidative process, different organisms have developed different systems. In bacteria, disulfide bond formation is assisted by the Dsb protein family; in eukarya, disulfide bond formation and rearrangement are catalyzed by PDI. In thermophilic organisms, a potential key role in disulfide bond formation has recently been ascribed to a new cytosolic Protein Disulphide Oxidoreductase family whose members have a molecular mass of about 26 kDa and are characterized by two thioredoxin folds comprising a CXXC active site motif each. Here we report on the functional and structural characterization of ApPDO, a new member of this family, which was isolated from the archaeon Aeropyrum pernix K1. Functional studies have revealed that ApPDO can catalyze the reduction, oxidation and isomerization of disulfide bridges. Structural studies have shown that this protein has two CXXC active sites with fairly similar geometrical parameters typical of a stable conformation. Finally, a theoretical calculation of the cysteine pK(a) values has suggested that the two active sites have similar functional properties and each of them can impart activity to the enzyme. Our results are evidence of functional similarity between the members of the Protein Disulphide Oxidoreductase family and the eukaryotic enzyme PDI. However, as the different three-dimensional features of these two biological systems strongly suggest significantly different mechanisms of action, further experimental studies will be needed to make clear how different three-dimensional structures can result in systems with similar functional behavior.
Keywords:PDO  protein disulfide oxidoreductase  ApPDO  Aeropyrum pernix PDO  PfPDO  Pyrococcus furiosus PDO  AaPDO  Aquifex aeolicus PDO  Trx  thioredoxin  Grx  glutaredoxin  Dsb  disulfide bond-forming  GSH  glutathione reduced form  GSSG  GSH oxidized form  PDI  protein disulfide isomerase  DTT  dithiothreitol
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