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J Inorg Biochem ; 101(2): 336-47, 2007 Feb.
Article in English | MEDLINE | ID: mdl-17137630

ABSTRACT

In heme peroxidases, a distal His residue plays an essential role in the initial two electron oxidation of resting state enzyme to compound I by hydrogen peroxide. A distal Arg residue assists in this process. The contributions of the charge, H-bonding capacity, size, and mobility of this Arg residue to Coprinus cinereus peroxidase (CIP) reactivity and stability have been examined by substituting Arg51 with Gln (retains H-bond donor at N epsilon position), Asn (small size, H-bond donor and acceptor), Leu (similar to Asn, but hydrophobic), and Lys (charge and H-bond donor, but at N zeta position). UV-visible spectroscopy was used to monitor pH-linked heme changes, compound I formation and reduction, fluoride binding, and thermostability. (1)H NMR spectroscopy enabled heme pocket differences in both resting and cyanide-ligated states of the enzymes to be evaluated and compared with wild-type CIP. We found that the H-bonding capacity of distal Arg is key to fast compound I formation and ligand binding to heme, whereas charge is important for lowering the pK(a) of distal His and for the binding and stabilisation of anionic ligands at heme iron. The properties of the distal Arg residue in CIP, cytochrome c peroxidase (CCP) and horseradish peroxidase (HRP) differ significantly in their pH induced transitions and dynamics.


Subject(s)
Coprinus/enzymology , Peroxidases/chemistry , Peroxidases/metabolism , Amino Acid Substitution , Arginine/chemistry , Catalytic Domain , Coprinus/genetics , Enzyme Stability , Heme/chemistry , Hydrogen Bonding , Hydrogen-Ion Concentration , Kinetics , Models, Molecular , Mutagenesis, Site-Directed , Nuclear Magnetic Resonance, Biomolecular , Oxidation-Reduction , Peroxidases/genetics , Spectrophotometry
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