| Literature DB >> 24145032 |
Kenjiro Yazawa1, Hiroyuki Furusawa, Yoshio Okahata.
Abstract
Disulfide bond formation protein B (DsbBS-S,S-S) is an inner membrane protein in Escherichia coli that has two disulfide bonds (S-S, S-S) that play a role in oxidization of a pair of cysteine residues (SH, SH) in disulfide bond formation protein A (DsbASH,SH). The oxidized DsbAS-S, with one disulfide bond (S-S), can oxidize proteins with SH groups for maturation of a folding preprotein. Here, we have described the transient kinetics of the oxidation reaction between DsbASH,SH and DsbBS-S,S-S. We immobilized DsbBS-S,S-S embedded in lipid bilayers on the surface of a 27-MHz quartz crystal microbalance (QCM) device to detect both formation and degradation of the reaction intermediate (DsbA-DsbB), formed via intermolecular disulfide bonds, as a mass change in real time. The obtained kinetic parameters (intermediate formation, reverse, and oxidation rate constants (kf, kr, and kcat, respectively) indicated that the two pairs of cysteine residues in DsbBS-S,S-S were more important for the stability of the DsbA-DsbB intermediate than ubiquinone, an electron acceptor for DsbBS-S,S-S. Our data suggested that the reaction pathway of almost all DsbASH,SH oxidation processes would proceed through this stable intermediate, avoiding the requirement for ubiquinone.Entities:
Keywords: Disulfide Bond Formation Protein; Enzyme Kinetics; Kinetics; Membrane Lipids; Membrane Proteins; Protein Chemistry; Quartz Crystal Microbalance; Supported Lipid Bilayer; Transient Kinetic Analysis
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Year: 2013 PMID: 24145032 PMCID: PMC3861646 DOI: 10.1074/jbc.M113.519876
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157