Kinetic studies on peroxynitrite reduction by peroxiredoxins. 2008

Madia Trujillo, and Gerardo Ferrer-Sueta, and Rafael Radi
Department of Biochemistry, Facultad de Medicina, Universidad de la República, Montevideo, Uruguay.

Peroxiredoxins catalytically reduce peroxynitrite to nitrite. The peroxidatic cysteine of peroxiredoxins reacts rapidly with peroxynitrite. The rate constant of that reaction can be measured using a stopped flow spectrophotometer either directly by following peroxynitrite disappearance in the region of 300 to 310 nm using an initial rate approach or steady-state measurements or by competition with a reaction of known rate constant. The reactions used to compete with peroxiredoxins include the oxidation of Mn(III)porphyrins and horseradish peroxidase by peroxynitrite. Additionally, a method is described in which a hydroperoxide competes with peroxynitrite for the oxidation of peroxiredoxin. Moreover, a fluorescent technique for determining the kinetics of thioredoxin-mediated peroxiredoxin reduction, closing the catalytic cycle, is also described. All methods reviewed provide reliable values of rate constants and a combination of them can be used to provide further reassurance; applicability and advantages of the different methodologies are discussed.

UI MeSH Term Description Entries
D007700 Kinetics The rate dynamics in chemical or physical systems.
D010084 Oxidation-Reduction A chemical reaction in which an electron is transferred from one molecule to another. The electron-donating molecule is the reducing agent or reductant; the electron-accepting molecule is the oxidizing agent or oxidant. Reducing and oxidizing agents function as conjugate reductant-oxidant pairs or redox pairs (Lehninger, Principles of Biochemistry, 1982, p471). Redox,Oxidation Reduction
D002384 Catalysis The facilitation of a chemical reaction by material (catalyst) that is not consumed by the reaction. Catalyses
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D054464 Peroxiredoxins A family of ubiquitously-expressed peroxidases that play a role in the reduction of a broad spectrum of PEROXIDES like HYDROGEN PEROXIDE; LIPID PEROXIDES and peroxinitrite. They are found in a wide range of organisms, such as BACTERIA; PLANTS; and MAMMALS. The enzyme requires the presence of a thiol-containing intermediate such as THIOREDOXIN as a reducing cofactor. Peroxiredoxin,Alkyl Hydroperoxide Reductase,Alkyl Hydroperoxide Reductase C,Alkyl Hydroperoxide Reductase D,Alkylhydroperoxide Reductase,Peroxidoxin,Peroxiredoxin 1,Peroxiredoxin 2,Peroxiredoxin 4,Peroxiredoxin 5,Peroxiredoxin I,Peroxiredoxin II,Peroxiredoxin IV,Peroxiredoxin V,Peroxiredoxin-4,Protector Protein (Mixed-Function Oxidase Systems),Thiol-Specific Antioxidant Protein,Thioredoxin Peroxidase,Thioredoxin Peroxidase 1,Thioredoxin Peroxidase 2,Thioredoxin Peroxidase PMP20,Thioredoxin-Dependent Peroxide Reductase 1,Thioredoxin-Dependent Peroxide Reductase 2,Hydroperoxide Reductase, Alkyl,Thiol Specific Antioxidant Protein,Thioredoxin Dependent Peroxide Reductase 1,Thioredoxin Dependent Peroxide Reductase 2
D030421 Peroxynitrous Acid A potent oxidant synthesized by the cell during its normal metabolism. Peroxynitrite is formed from the reaction of two free radicals, NITRIC OXIDE and the superoxide anion (SUPEROXIDES). Peroxynitrite,Peroxonitrite,Peroxynitrous Acid, Potassium Salt,Acid, Peroxynitrous,Acids, Peroxynitrous,Peroxonitrites,Peroxynitrites,Peroxynitrous Acids

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