Apolar distal pocket mutants of yeast cytochrome c peroxidase: Hydrogen peroxide reactivity and cyanide binding of the TriAla,TriVal, and TriLeu variants |
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Authors: | Anil K. Bidwai Cassandra MeyenHeather Kilheeney Damian WroblewskiLidia B. Vitello James E. Erman |
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Affiliation: | Department of Chemistry and Biochemistry, Northern Illinois University, DeKalb, IL 60115, USA |
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Abstract: | Three yeast cytochrome c peroxidase (CcP) variants with apolar distal heme pockets have been constructed. The CcP variants have Arg48, Trp51, and His52 mutated to either all alanines, CcP(triAla), all valines, CcP(triVal), or all leucines, CcP(triLeu). The triple mutants have detectable enzymatic activity at pH 6 but the activity is less than 0.02% that of wild-type CcP. The activity loss is primarily due to the decreased rate of reaction between the triple mutants and H2O2 compared to wild-type CcP. Spectroscopic properties and cyanide binding characteristics of the triple mutants have been investigated over the pH stability region of CcP, pH 4 to 8. The absorption spectra indicate that the CcP triple mutants have hemes that are predominantly five-coordinate, high-spin at pH 5 and six-coordinate, low-spin at pH 8. Cyanide binding to the triple mutants is biphasic indicating that the triple mutants have two slowly-exchanging conformational states with different cyanide affinities. The binding affinity for cyanide is reduced at least two orders of magnitude in the triple mutants compared to wild-type CcP and the rate of cyanide binding is reduced by four to five orders of magnitude. Correlation of the reaction rates of CcP and 12 distal pocket mutants with H2O2 and HCN suggests that both reactions require ionization of the reactants within the distal heme pocket allowing the anion to bind the heme iron. Distal pocket features that promote substrate ionization (basic residues involved in base-catalyzed substrate ionization or polar residues that can stabilize substrate anions) increase the overall rate of reaction with H2O2 and HCN while features that inhibit substrate ionization slow the reactions. |
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Keywords: | CcP, generic abbreviation for cytochrome c peroxidase whatever the source yCcP, authentic yeast cytochrome c peroxidase isolated from S. cerevisiae rCcP, recombinant cytochrome c peroxidase expressed in E. coli, the rCcP used in this study has an amino acid sequence identical to that of yCcP CcP(MI), recombinant CcP expressed in E. coli with four amino acid variations compared to yCcP, a Met-Ile N-terminal extension and mutations T53I and D152G CcP(triAla), triple mutant of rCcP with R48A/W51A/H52A CcP(triVal), triple mutant of rCcP with R48V/W51V/H52V CcP(triLeu), triple mutant of rCcP with R48L/W51L/H52L CcP-I, CcP compound I CD, circular dichroism |
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