Literature DB >> 12465963

The reaction mechanism of xanthine oxidase: evidence for two-electron chemistry rather than sequential one-electron steps.

Amy L Stockert1, Sujata S Shinde, Robert F Anderson, Russ Hille.   

Abstract

Current research on xanthine oxidase has favored a mechanism involving base-catalyzed proton abstraction from a Mo-OH group, allowing nucleophilic attack on the substrate and hydride transfer from the substrate to Mo=S group in the active site. During the course of this reaction mechanism, the molybdenum redox cycles from MoVI to MoIV, with reoxidation of the MoIV speices to form the EPR active MoV intermediate. However, it has also been suggested that the reaction occurs in two subsequent one-electron steps. We have determined kinetic parameters kred and kred/Kd for a variety of plausible substrates as well as the one-electron reduction potentials for these substrates. Our data indicate no correlation between these kinetic parameters and their one-electron reduction potentials, as would be expected if the enzyme were using two subsequent one-electron reduction steps. Our results provide additional support to current evidence for the favored two-electron reduction mechanism.

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Year:  2002        PMID: 12465963     DOI: 10.1021/ja027388d

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  7 in total

1.  Molybdenum enzymes in higher organisms.

Authors:  Russ Hille; Takeshi Nishino; Florian Bittner
Journal:  Coord Chem Rev       Date:  2011-05-01       Impact factor: 22.315

Review 2.  The mononuclear molybdenum enzymes.

Authors:  Russ Hille; James Hall; Partha Basu
Journal:  Chem Rev       Date:  2014-01-28       Impact factor: 60.622

3.  Xanthine oxidase-product complexes probe the importance of substrate/product orientation along the reaction coordinate.

Authors:  Jing Yang; Chao Dong; Martin L Kirk
Journal:  Dalton Trans       Date:  2017-10-10       Impact factor: 4.390

4.  Substrate orientation and catalytic specificity in the action of xanthine oxidase: the sequential hydroxylation of hypoxanthine to uric acid.

Authors:  Hongnan Cao; James M Pauff; Russ Hille
Journal:  J Biol Chem       Date:  2010-07-08       Impact factor: 5.157

Review 5.  Electronic structure contributions to reactivity in xanthine oxidase family enzymes.

Authors:  Benjamin W Stein; Martin L Kirk
Journal:  J Biol Inorg Chem       Date:  2014-11-26       Impact factor: 3.358

6.  Influences of Linker and Nucleoside for the Helical Self-Assembly of Perylene Along DNA Templates.

Authors:  Yannic Fritz; Hans-Achim Wagenknecht
Journal:  Front Chem       Date:  2019-10-22       Impact factor: 5.221

Review 7.  The Role of Oxidative Stress in Hyperuricemia and Xanthine Oxidoreductase (XOR) Inhibitors.

Authors:  Ning Liu; Hu Xu; Qianqian Sun; Xiaojuan Yu; Wentong Chen; Hongquan Wei; Jie Jiang; Youzhi Xu; Wenjie Lu
Journal:  Oxid Med Cell Longev       Date:  2021-03-26       Impact factor: 6.543

  7 in total

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