Literature DB >> 14717588

Albumin oxidation to diverse radicals by the peroxidase activity of Cu,Zn-superoxide dismutase in the presence of bicarbonate or nitrite: diffusible radicals produce cysteinyl and solvent-exposed and -unexposed tyrosyl radicals.

Marcelo G Bonini1, Denise C Fernandes, Ohara Augusto.   

Abstract

The peroxidase activity of Cu,Zn-superoxide dismutase (Cu,Zn-SOD) has been extensively studied in recent years due to its potential relationship to familial amyotrophic lateral sclerosis. The mechanism by which Cu,Zn-SOD/hydrogen peroxide/bicarbonate is able to oxidize substrates has been proposed to be dependent on an oxidant whose nature, diffusible carbonate radical anion or enzyme-bound peroxycarbonate, remains debatable. One possibility to distinguish these species is to examine whether protein targets are oxidized to protein radicals. Here, we used EPR methodologies to study bovine serum albumin (BSA) oxidation by Cu,Zn-SOD/hydrogen peroxide in the absence and presence of bicarbonate or nitrite. The results showed that BSA oxidation in the presence of bicarbonate or nitrite at pH 7.4 produced mainly solvent-exposed and -unexposed BSA-tyrosyl radicals, respectively. Production of the latter was shown to be preceded by BSA-cysteinyl radical formation. The results also showed that hydrogen peroxide/bicarbonate extensively oxidized BSA-cysteine to the corresponding sulfenic acid even in the absence of Cu,Zn-SOD. Thus, our studies support the idea that peroxycarbonate acts as a two-electron oxidant and may be an important biological mediator. Overall, the results prove the diffusible and radical nature of the oxidants produced during the peroxidase activity of Cu,Zn-SOD in the presence of bicarbonate or nitrite.

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Year:  2004        PMID: 14717588     DOI: 10.1021/bi035606p

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  12 in total

1.  Immunolocalization of hypochlorite-induced, catalase-bound free radical formation in mouse hepatocytes.

Authors:  Marcelo G Bonini; Arno G Siraki; Boyko S Atanassov; Ronald P Mason
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2.  (Bi)sulfite oxidation by copper, zinc-superoxide dismutase: Sulfite-derived, radical-initiated protein radical formation.

Authors:  Kalina Ranguelova; Marcelo G Bonini; Ronald P Mason
Journal:  Environ Health Perspect       Date:  2010-03-26       Impact factor: 9.031

Review 3.  Regulation of Ras proteins by reactive nitrogen species.

Authors:  Michael F Davis; Dom Vigil; Sharon L Campbell
Journal:  Free Radic Biol Med       Date:  2011-05-08       Impact factor: 7.376

4.  The biological buffer bicarbonate/CO2 potentiates H2O2-mediated inactivation of protein tyrosine phosphatases.

Authors:  Haiying Zhou; Harkewal Singh; Zachary D Parsons; Sarah M Lewis; Sanjib Bhattacharya; Derrick R Seiner; Jason N LaButti; Thomas J Reilly; John J Tanner; Kent S Gates
Journal:  J Am Chem Soc       Date:  2011-09-19       Impact factor: 15.419

5.  Oxidation of the tryptophan 32 residue of human superoxide dismutase 1 caused by its bicarbonate-dependent peroxidase activity triggers the non-amyloid aggregation of the enzyme.

Authors:  Fernando R Coelho; Asif Iqbal; Edlaine Linares; Daniel F Silva; Filipe S Lima; Iolanda M Cuccovia; Ohara Augusto
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6.  Oxidation-state-dependent reactions of cytochrome c with the trioxidocarbonate(*1-) radical: a pulse radiolysis study.

Authors:  Anastasia S Domazou; Willem H Koppenol
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7.  Direct magnetic resonance evidence for peroxymonocarbonate involvement in the cu,zn-superoxide dismutase peroxidase catalytic cycle.

Authors:  Marcelo G Bonini; Scott A Gabel; Kalina Ranguelova; Krisztian Stadler; Eugene F Derose; Robert E London; Ronald P Mason
Journal:  J Biol Chem       Date:  2009-03-13       Impact factor: 5.157

8.  Cu,Zn-superoxide dismutase-driven free radical modifications: copper- and carbonate radical anion-initiated protein radical chemistry.

Authors:  Dario C Ramirez; Sandra E Gomez-Mejiba; Jean T Corbett; Leesa J Deterding; Kenneth B Tomer; Ronald P Mason
Journal:  Biochem J       Date:  2009-01-01       Impact factor: 3.857

9.  Buffer modulation of menadione-induced oxidative stress in Saccharomyces cerevisiae.

Authors:  Oleh V Lushchak; Maria M Bayliak; Olha V Korobova; Rodney L Levine; Volodymyr I Lushchak
Journal:  Redox Rep       Date:  2009       Impact factor: 4.412

10.  Peroxynitrite preferentially oxidizes the dithiol redox motifs of protein-disulfide isomerase.

Authors:  Álbert Souza Peixoto; R Ryan Geyer; Asif Iqbal; Daniela R Truzzi; Ana I Soares Moretti; Francisco R M Laurindo; Ohara Augusto
Journal:  J Biol Chem       Date:  2017-11-30       Impact factor: 5.157

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