This proposal involves the peroxidase enzymes, typified in this case by yeast cytochrome c peroxidase, and the monomeric oxygen- binding proteins, typified by the Glycera dibranchiata monomer hemoglobins. Goals of this proposal include using isolated, natural proteins, recombinant wild-type proteins and recombinant mutant proteins maximize NMR characterization and quantify heme- site chemistry. In the case of cytochrome c peroxidase, we are proposing to build upon our significant success during the past year in making proton NMR assignments using a variety of 2D NMR methods in order to expand these assignments. Specifically created site-specific mutant proteins will be useful in this effort. Isotope labeling (15N & 13C) will be used as an assignment tool. In addition, characterization of the properties of the individual mutant proteins will be carried out by NMR. In the case of the Glycera dibranchiata monomer hemoglobins, whose architecture is virtually superimposable to that of sperm-whale myoglobin, we propose to NMR with isotope labelling for the goal of making """"""""total"""""""" assignments. We intend to demonstrate NMR methods for assaying structural changes induced by specific mutations. We propose to use five specific site-mutants designed to modify ligand binding dynamics in a predictable manner, and design mutants predicted to modify heme--globin interactions in anticipated ways. In addition we intend to use these results and others in order to test our ability to design and create mutants designed for a specific purpose, based upon inferences from the crystal structure.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
1R01GM047645-01
Application #
3307127
Study Section
Metallobiochemistry Study Section (BMT)
Project Start
1992-05-01
Project End
1996-04-30
Budget Start
1992-05-01
Budget End
1993-04-30
Support Year
1
Fiscal Year
1992
Total Cost
Indirect Cost
Name
Washington State University
Department
Type
Schools of Arts and Sciences
DUNS #
041485301
City
Pullman
State
WA
Country
United States
Zip Code
99164
Helms, Gregory; Satterlee, James D (2013) Keeping PASE with WEFT: SHWEFT-PASE pulse sequences for 1H NMR spectra of highly paramagnetic molecules. Magn Reson Chem 51:222-9
Satterlee, James D (2011) Origins of aging mass loss in recombinant N-terminus and C-terminus deletion mutants of the heme-PAS biosensor domain BjFixLH(140-270). J Inorg Biochem 105:609-15
Reynolds, Mark F; Ackley, Lindsey; Blizman, Alice et al. (2009) Role of conserved F(alpha)-helix residues in the native fold and stability of the kinase-inhibited oxy state of the oxygen-sensing FixL protein from Sinorhizobium meliloti. Arch Biochem Biophys 485:150-9
Satterlee, James D; Suquet, Christine; Bidwai, Anil K et al. (2008) Mass instability in isolated recombinant FixL heme domains of Bradyrhizobium japonicum. Biochemistry 47:1540-53
Mokdad, Audrey; Nissen, Mark; Satterlee, James D et al. (2007) Evidence for fast conformational change upon ligand dissociation in the HemAT class of bacterial oxygen sensors. FEBS Lett 581:4512-8
Liu, Yangzhong; Ma, Li-Hua; Zhang, Xuhong et al. (2006) 1H NMR Study of the influence of hemin vinyl-->methyl substitution on the interaction between the C-terminus and substrate and the ""aging"" of the heme oxygenase from Neisseria meningitidis: induction of active site structural heterogeneity by a two-fold Biochemistry 45:13875-88
Satterlee, James D; Mazur, Ursula (2006) Small molecule directed aggregation of a heme peptide on gold: an STM study. J Phys Chem B 110:22968-70
Miksovska, Jaroslava; Suquet, Christine; Satterlee, James D et al. (2005) Characterization of conformational changes coupled to ligand photodissociation from the heme binding domain of FixL. Biochemistry 44:10028-36
Park, HaJeung; Suquet, Christine; Satterlee, James D et al. (2004) Insights into signal transduction involving PAS domain oxygen-sensing heme proteins from the X-ray crystal structure of Escherichia coli Dos heme domain (Ec DosH). Biochemistry 43:2738-46
Bidwai, Anil; Witt, Misty; Foshay, Miriam et al. (2003) Cyanide binding to cytochrome c peroxidase (H52L). Biochemistry 42:10764-71

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