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Mesopone cytochrome c peroxidase: functional model of heme oxygenated oxidases.

J Inorg Biochem 91 635-43 (2002)

Abstract

The effect of heme ring oxygenation on enzyme structure and function has been examined in a reconstituted cytochrome c peroxidase. Oxochlorin derivatives were formed by OsO(4) treatment of mesoporphyrin followed by acid-catalyzed pinacol rearrangement. The northern oxochlorin isomers were isolated by chromatography, and the regio-isomers assignments determined by 2D COSY and NOE 1H NMR. The major isomer, 4-mesoporphyrinone (Mp), was metallated with FeCl(2) and reconstituted into cytochrome c peroxidase (CcP) forming a hybrid green protein, MpCcP. The heme-altered enzyme has 99% wild-type peroxidase activity with cytochrome c. EPR spectroscopy of MpCcP intermediate compound I verifies the formation of the Trp(191) radical similar to wild-type CcP in the reaction cycle. Peroxidase activity with small molecules is varied: guaiacol turnover increases approximately five-fold while that with ferrocyanide is approximately 85% of native. The electron-withdrawing oxo-substitutents on the cofactor cause a approximately 60-mV increase in Fe(III)/Fe(II) reduction potential. The present investigation represents the first structural characterization of an oxochlorin protein with X-ray intensity data collected to 1.70 A. Although a mixture of R- and S-mesopone isomers of the FeMP cofactor was used during heme incorporation into the apo-protein, only the S-isomer is found in the crystallized protein.

Reviews - 1kok mentioned but not cited (1)

  1. Structure and functions of profilins. Krishnan K, Moens PDJ. Biophys Rev 1 71-81 (2009)


Articles citing this publication (2)

  1. The 1.13-A structure of iron-free cytochrome c peroxidase. Bhaskar B, Poulos TL. J Biol Inorg Chem 10 425-430 (2005)
  2. Composite films of lecithin and heme proteins with electrochemical and electrocatalytic activities. Qiao Y, Jian F, Yu H, Hu L. J Colloid Interface Sci 315 537-543 (2007)