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Journal Abstract Search


402 related items for PubMed ID: 22122405

  • 1. Hydroperoxide and peroxynitrite reductase activity of poplar thioredoxin-dependent glutathione peroxidase 5: kinetics, catalytic mechanism and oxidative inactivation.
    Selles B, Hugo M, Trujillo M, Srivastava V, Wingsle G, Jacquot JP, Radi R, Rouhier N.
    Biochem J; 2012 Mar 01; 442(2):369-80. PubMed ID: 22122405
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  • 5. Atypical thioredoxins in poplar: the glutathione-dependent thioredoxin-like 2.1 supports the activity of target enzymes possessing a single redox active cysteine.
    Chibani K, Tarrago L, Gualberto JM, Wingsle G, Rey P, Jacquot JP, Rouhier N.
    Plant Physiol; 2012 Jun 01; 159(2):592-605. PubMed ID: 22523226
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  • 12. Roles for the two cysteine residues of AhpC in catalysis of peroxide reduction by alkyl hydroperoxide reductase from Salmonella typhimurium.
    Ellis HR, Poole LB.
    Biochemistry; 1997 Oct 28; 36(43):13349-56. PubMed ID: 9341227
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  • 13. Catalytic and chemical competence of regulation of cdc25 phosphatase by oxidation/reduction.
    Sohn J, Rudolph J.
    Biochemistry; 2003 Sep 02; 42(34):10060-70. PubMed ID: 12939134
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  • 14. Catalytic mechanism of thiol peroxidase from Escherichia coli. Sulfenic acid formation and overoxidation of essential CYS61.
    Baker LM, Poole LB.
    J Biol Chem; 2003 Mar 14; 278(11):9203-11. PubMed ID: 12514184
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  • 16. Horseradish peroxidase compound I as a tool to investigate reactive protein-cysteine residues: from quantification to kinetics.
    Toledo JC, Audi R, Ogusucu R, Monteiro G, Netto LE, Augusto O.
    Free Radic Biol Med; 2011 May 01; 50(9):1032-8. PubMed ID: 21354305
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