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  • Author: Erman JE
  • References

Author: Erman JE


References 29 references


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  • Bidwai A, et al. (2015) Apolar distal pocket mutants of yeast cytochrome c peroxidase: Binding of imidazole, 1-methylimidazole and 4-nitroimidazole to the triAla, triVal, and triLeu variants. Biochim Biophys Acta 1854(8):919-29 PMID:25900360
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  • Erman JE, et al. (2015) Binding of Yeast Cytochrome c to Forty-Four Charge-Reversal Mutants of Yeast Cytochrome c Peroxidase: Isothermal Titration Calorimetry. Biochemistry 54(31):4845-54 PMID:26212209
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  • Erman JE, et al. (2015) Binding of imidazole, 1-methylimidazole and 4-nitroimidazole to yeast cytochrome c peroxidase (CcP) and the distal histidine mutant, CcP(H52L). Biochim Biophys Acta 1854(8):869-81 PMID:25907133
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  • Bidwai AK, et al. (2013) Apolar distal pocket mutants of yeast cytochrome c peroxidase: hydrogen peroxide reactivity and cyanide binding of the TriAla, TriVal, and TriLeu variants. Biochim Biophys Acta 1834(1):137-48 PMID:23022490
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  • DiCarlo CM, et al. (2011) Reduction potential of yeast cytochrome c peroxidase and three distal histidine mutants: dependence on pH. J Inorg Biochem 105(4):532-7 PMID:21334283
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  • Pearl NM, et al. (2008) Effect of single-site charge-reversal mutations on the catalytic properties of yeast cytochrome c peroxidase: evidence for a single, catalytically active, cytochrome c binding domain. Biochemistry 47(9):2766-75 PMID:18232645
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  • DiCarlo CM, et al. (2007) Effect of active site and surface mutations on the reduction potential of yeast cytochrome c peroxidase and spectroscopic properties of the oxidized and reduced enzyme. J Inorg Biochem 101(4):603-13 PMID:17275914
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  • Pearl NM, et al. (2007) Effect of single-site charge-reversal mutations on the catalytic properties of yeast cytochrome c peroxidase: mutations near the high-affinity cytochrome c binding site. Biochemistry 46(28):8263-72 PMID:17580971
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  • Nakani S, et al. (2006) Characterization of a covalently linked yeast cytochrome c-cytochrome c peroxidase complex: evidence for a single, catalytically active cytochrome c binding site on cytochrome c peroxidase. Biochemistry 45(32):9887-93 PMID:16893189
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  • Nakani S, et al. (2006) Characterization of four covalently-linked yeast cytochrome c/cytochrome c peroxidase complexes: Evidence for electrostatic interaction between bound cytochrome c molecules. Biochemistry 45(48):14371-8 PMID:17128976
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  • Jacobson T, et al. (2004) Azide binding to yeast cytochrome c peroxidase and horse metmyoglobin: comparative thermodynamic investigation using isothermal titration calorimetry. Arch Biochem Biophys 422(2):125-36 PMID:14759599
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  • Bidwai A, et al. (2003) Cyanide binding to cytochrome c peroxidase (H52L). Biochemistry 42(36):10764-71 PMID:12962501
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  • Satterlee JD, et al. (2003) Temperature, pH, and solvent isotope dependent properties of the active sites of resting-state and cyanide-ligated recombinant cytochrome c peroxidase (H52L) revealed by proton hyperfine resonance spectra. Biochemistry 42(36):10772-82 PMID:12962502
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  • Erman JE and Vitello LB (2002) Yeast cytochrome c peroxidase: mechanistic studies via protein engineering. Biochim Biophys Acta 1597(2):193-220 PMID:12044899
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  • Savenkova MI, et al. (2001) Expression, purification, characterization, and NMR studies of highly deuterated recombinant cytochrome c peroxidase. Biochemistry 40(40):12123-31 PMID:11580287
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  • Satterlee JD, et al. (2000) Temperature, pH, and solvent isotope effects on cytochrome c peroxidase mutant N82A studied by proton NMR. J Protein Chem 19(6):535-42 PMID:11195979
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  • Palamakumbura AH, et al. (1999) Oxidation of cytochrome c peroxidase to compound I by peroxyacids: evidence for rate-limiting diffusion through the protein matrix. Biochemistry 38(47):15647-52 PMID:10569950
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  • Palamakumbura AH, et al. (1999) Oxidation of the His-52 --> Leu mutant of cytochrome c peroxidase by p-nitroperoxybenzoic acid: role of the distal histidine in hydroperoxide activation. Biochemistry 38(47):15653-8 PMID:10569951
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  • Sukits SF, et al. (1997) Proton NMR assignments and magnetic axes orientations for wild-type yeast iso-1-ferricytochrome c free in solution and bound to cytochrome c peroxidase. Biochemistry 36(17):5251-9 PMID:9136887
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  • Matthis AL and Erman JE (1995) Cytochrome c peroxidase-catalyzed oxidation of yeast iso-1 ferrocytochrome c by hydrogen peroxide. Ionic strength dependence of the steady-state parameters. Biochemistry 34(31):9985-90 PMID:7632697
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  • Matthis AL, et al. (1995) Oxidation of yeast iso-1 ferrocytochrome c by yeast cytochrome c peroxidase compounds I and II. Dependence upon ionic strength. Biochemistry 34(31):9991-9 PMID:7632698
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  • Miller MA, et al. (1995) Regulation of interprotein electron transfer by Trp 191 of cytochrome c peroxidase. Biochemistry 34(37):12048-58 PMID:7547943
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  • Erman JE, et al. (1993) Histidine 52 is a critical residue for rapid formation of cytochrome c peroxidase compound I. Biochemistry 32(37):9798-806 PMID:8396972
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  • Vitello LB, et al. (1993) Effect of arginine-48 replacement on the reaction between cytochrome c peroxidase and hydrogen peroxide. Biochemistry 32(37):9807-18 PMID:8396973
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  • Satterlee JD, et al. (1990) Comparative proton NMR analysis of wild-type cytochrome c peroxidase from yeast, the recombinant enzyme from Escherichia coli, and an Asp-235----Asn-235 mutant. Biochemistry 29(37):8797-804 PMID:2176836
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  • Erman JE, et al. (1987) A covalent complex between horse heart cytochrome c and yeast cytochrome c peroxidase: kinetic properties. Biochim Biophys Acta 911(1):1-10 PMID:3024731
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  • Satterlee JD, et al. (1987) Proton hyperfine resonance assignments in cyanide-ligated cytochrome c peroxidase using the nuclear Overhauser effect. J Biol Chem 262(24):11578-83 PMID:3040708
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  • Satterlee JD, et al. (1987) A proton NMR study of the non-covalent complex of horse cytochrome c and yeast cytochrome-c peroxidase and its comparison with other interacting protein complexes. Biochim Biophys Acta 912(1):87-97 PMID:3030433
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  • Dowe RJ and Erman JE (1985) Physicochemical characterization of the alkaline denaturation of cytochrome c peroxidase. Biochim Biophys Acta 827(2):183-9 PMID:2981558
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