Spectroscopic studies (largely multinuclear nuclear magnetic resonance) of the reactive forms of heme enzymes and model porphyrin complexes are proposed to understand the mechanism of action of oxidizing hem enzymes (cytochrome P450, hem oxygenase, peroxidases, ferryl myoglobin). In proteins resonance assignments will be accomplished by isotopic labeling, nuclear Overhauser effects, saturation transfer, 3H-NMR, and 57Fe, and comparison with modes. These will be used to gain information about the structure and reactivity of the heme sites. Model studies for the reactive forms include studies of ferryl (FeIV=0)2+ complexes, porphyrin N-oxide complexes, and iron oxo phlorins. Studies of peroxidases include examination of the heme cavity, substrate-binding, acidic and alkalin forms, probes of propionate interactions, and compound I electronic structure. New methodologies for obtaining NMR spectral information from paramagnetic and diamagnetic forms of cytochrome P-450cam are proposed. Models for the process of covalent porphyrin modification (N-alkylation, oxidative degradation) will be examined especially in terms of the regiospecifity of transfer of substituents from iron to pyrrole group or meso positions in unsymmetrical hemes. Extensive studies of the recently detected multiple forms of sulfmyoglobin (formed by sulfide reaction of ferryl myoglobin) are proposed including structural characterization of protein forms and extractable green and red modified porphyrins, studies of the mechanism of formation and interconversion of these forms, preparation of model porphyrins with appended sulfur-containing functional groups, studies of the (FeIV=0)2+/S-2 reaction in models, examination of potential multiple forms sulfhemoglobin and studies of reagents which convert sulfhemes back to their native forms with a view toward clinically useful material for the treatment of sulfhemoglobinanemia.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM026226-10
Application #
3273726
Study Section
Metallobiochemistry Study Section (BMT)
Project Start
1979-04-01
Project End
1992-03-31
Budget Start
1988-04-01
Budget End
1989-03-31
Support Year
10
Fiscal Year
1988
Total Cost
Indirect Cost
Name
University of California Davis
Department
Type
Schools of Arts and Sciences
DUNS #
094878337
City
Davis
State
CA
Country
United States
Zip Code
95618
Garcia, Thelma Y; Olmstead, Marilyn M; Fettinger, James C et al. (2008) Cleavage of the indium(III) octaethyloxophlorin dimer, {In(III)(OEPO)}2, with Lewis bases. Importance of outer-sphere hydrogen bonding in adduct structures. Inorg Chem 47:11417-22
La Mar, Gerd N (2007) Application of the paramagnetic dipole field for solution NMR active site structure determination in low-spin, cyanide-inhibited ferric hemoproteins. IUBMB Life 59:513-27
Rath, Sankar Prasad; Olmstead, Marilyn M; Balch, Alan L (2006) Electron distribution in iron octaethyloxophlorin complexes. Importance of the Fe(III) oxophlorin trianion form in the bis-pyridine and bis-imidazole complexes. Inorg Chem 45:6083-93
Bondarenko, Vasyl; Wang, Jingtao; Kalish, Heather et al. (2005) Solution 1H NMR study of the accommodation of the side chain of n-butyl-etiohemin-I incorporated into the active site of cyano-metmyoglobin. J Biol Inorg Chem 10:283-93
Sprutta, Natasza; Rath, Sankar Prasad; Olmstead, Marilyn M et al. (2005) Metal complexes of meso-amino-octaethylporphyrin and the oxidation of NiII(meso-amino-octaethylporphyrin). Inorg Chem 44:1452-9
Rath, Sankar Prasad; Olmstead, Marilyn M; Balch, Alan L (2004) The effects of axial ligands on electron distribution and spin states in iron complexes of octaethyloxophlorin, intermediates in heme degradation. J Am Chem Soc 126:6379-86
Rath, Sankar Prasad; Olmstead, Marilyn M; Balch, Alan L (2004) Reactions of meso-hydroxyhemes with carbon monoxide and reducing agents in search of the elusive species responsible for the g = 2.006 resonance of carbon monoxide-treated heme oxygenase. Isolation of diamagnetic iron(II) complexes of octaethyl-meso-hydro Inorg Chem 43:6357-65
Rath, Sankar Prasad; Kalish, Heather; Latos-Grazynski, Lechoslaw et al. (2004) Facile ring opening of iron(III) and iron(II) complexes of meso-amino-octaethylporphyrin by dioxygen. J Am Chem Soc 126:646-54
Kalish, Heather; Lee, Hon Man; Olmstead, Marilyn M et al. (2003) Heme cleavage with remarkable ease: paramagnetic intermediates formed by aerobic oxidation of a meso-amino-substituted iron porphyrin. J Am Chem Soc 125:4674-5
Ozarowski, Andrew; Lee, Hon Man; Balch, Alan L (2003) Crystal environments probed by EPR spectroscopy. Variations in the EPR spectra of Co(II)(octaethylporphyrin) doped in crystalline diamagnetic hosts and a reassessment of the electronic structure of four-coordinate cobalt(II). J Am Chem Soc 125:12606-14

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