Title of article :
Redox properties of heme peroxidases
Author/Authors :
Battistuzzi، نويسنده , , Gianantonio and Bellei، نويسنده , , Marzia and Bortolotti، نويسنده , , Carlo Augusto and Sola، نويسنده , , Marco، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2010
Pages :
16
From page :
21
To page :
36
Abstract :
Peroxidases are heme enzymes found in bacteria, fungi, plants and animals, which exploit the reduction of hydrogen peroxide to catalyze a number of oxidative reactions, involving a wide variety of organic and inorganic substrates. The catalytic cycle of heme peroxidases is based on three consecutive redox steps, involving two high-valent intermediates (Compound I and Compound II), which perform the oxidation of the substrates. Therefore, the thermodynamics and the kinetics of the catalytic cycle are influenced by the reduction potentials of three redox couples, namely Compound I/Fe3+, Compound I/Compound II and Compound II/Fe3+. In particular, the oxidative power of heme peroxidases is controlled by the (high) reduction potential of the latter two couples. Moreover, the rapid H2O2-mediated two-electron oxidation of peroxidases to Compound I requires a stable ferric state in physiological conditions, which depends on the reduction potential of the Fe3+/Fe2+ couple. The understanding of the molecular determinants of the reduction potentials of the above redox couples is crucial for the comprehension of the molecular determinants of the catalytic properties of heme peroxidases. eview provides an overview of the data available on the redox properties of Fe3+/Fe2+, Compound I/Fe3+, Compound I/Compound II and Compound II/Fe3+ couples in native and mutated heme peroxidases. The influence of the electron donor properties of the axial histidine and of the polarity of the heme environment is analyzed and the correlation between the redox properties of the heme group with the catalytic activity of this important class of metallo-enzymes is discussed.
Keywords :
Mammalian heme peroxidases , reduction potential , redox thermodynamics , Reduction entropy , Reduction enthalpy , Heme peroxidases , Plant heme peroxidases , Bacterial heme peroxidases
Journal title :
Archives of Biochemistry and Biophysics
Serial Year :
2010
Journal title :
Archives of Biochemistry and Biophysics
Record number :
1631225
Link To Document :
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