The biochemistry of carbon radicals has received relatively little attention despite the close biological association of carbon and oxygen radicals and the intense current interest in oxygen radical pathology. The focus of this proposal on carbon radicals reflects, in addition, their unique value as mechanistic probes. The proposed work builds on key advances made during the past period of support, particularly (a) the formulation of a rationale for the fact that radicals are produced by peroxidases but not monooxygenases, (b) the finding that protein radicals support cooxidation reactions, and (c) the development of improved spin trapping technology. The first goal is to elucidate the mechanisms of peroxidases and to determine the validity of the proposal that diffusible radical generation results from reaction with the heme edge rather than the activated oxygen. The second goal is to explore further the relationship between substrate structure and the production of diffusible carbon radicals by cytochrome P-450. The third goal is to continue the development of new spin traps and their use in studies of the physiological incidence of carbon radicals. The fourth goal is to explore the biological fates of carbon radicals, particularly their oxidation to cations and their reactions with unsaturated targets. The final goal is to elucidate the mechanisms involved in the migration of a radical center from one protein residue to another and the role of tyrosines in the oxidative binding of proteins to drugs and DNA. The collective intent of these studies is to advance our understanding of the biochemistry of carbon radicals and to clarify their toxicological potential.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM032488-08
Application #
3281377
Study Section
Toxicology Subcommittee 2 (TOX)
Project Start
1983-07-01
Project End
1992-06-30
Budget Start
1990-07-01
Budget End
1991-06-30
Support Year
8
Fiscal Year
1990
Total Cost
Indirect Cost
Name
University of California San Francisco
Department
Type
Schools of Pharmacy
DUNS #
073133571
City
San Francisco
State
CA
Country
United States
Zip Code
94143
Lardinois, Olivier M; Maltby, David A; Medzihradszky, Katalin F et al. (2009) Spin scavenging analysis of myoglobin protein-centered radicals using stable nitroxide radicals: characterization of oxoammonium cation-induced modifications. Chem Res Toxicol 22:1034-49
Meitzler, Jennifer L; Ortiz de Montellano, Paul R (2009) Caenorhabditis elegans and human dual oxidase 1 (DUOX1) ""peroxidase"" domains: insights into heme binding and catalytic activity. J Biol Chem 284:18634-43
Ortiz de Montellano, Paul R (2008) Mechanism and role of covalent heme binding in the CYP4 family of P450 enzymes and the mammalian peroxidases. Drug Metab Rev 40:405-26
Wojciechowski, Grzegorz; de Montellano, Paul R Ortiz (2007) Radical energies and the regiochemistry of addition to heme groups. Methylperoxy and nitrite radical additions to the heme of horseradish peroxidase. J Am Chem Soc 129:1663-72
Huang, Liusheng; Ortiz de Montellano, Paul R (2007) Arthromyces ramosus peroxidase produces two chlorinating species. Biochem Biophys Res Commun 355:581-6
Huang, Liusheng; Wojciechowski, Grzegorz; Ortiz de Montellano, Paul R (2006) Role of heme-protein covalent bonds in mammalian peroxidases. Protection of the heme by a single engineered heme-protein link in horseradish peroxidase. J Biol Chem 281:18983-8
Huang, Liusheng; Ortiz de Montellano, Paul R (2006) Heme-protein covalent bonds in peroxidases and resistance to heme modification during halide oxidation. Arch Biochem Biophys 446:77-83
Ghiladi, Reza A; Medzihradszky, Katalin F; Rusnak, Frank M et al. (2005) Correlation between isoniazid resistance and superoxide reactivity in mycobacterium tuberculosis KatG. J Am Chem Soc 127:13428-42
Wojciechowski, Grzegorz; Huang, Liusheng; Ortiz de Montellano, Paul R (2005) Autocatalytic modification of the prosthetic heme of horseradish but not lactoperoxidase by thiocyanate oxidation products. A role for heme-protein covalent cross-linking. J Am Chem Soc 127:15871-9
Ghiladi, Reza A; Knudsen, Giselle M; Medzihradszky, Katalin F et al. (2005) The Met-Tyr-Trp cross-link in Mycobacterium tuberculosis catalase-peroxidase (KatG): autocatalytic formation and effect on enzyme catalysis and spectroscopic properties. J Biol Chem 280:22651-63

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