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Reaction of wild-type and Glu243Asp variant yeast cytochrome c oxidase with O2
Authors:Linda Näsvik Öjemyr  Amandine Maréchal  Henrik Vestin  Brigitte Meunier  Peter R Rich  Peter Brzezinski
Institution:1. Department of Biochemistry and Biophysics, The Arrhenius Laboratories for Natural Sciences, Stockholm University, SE-106 91 Stockholm, Sweden;2. Glynn Laboratory of Bioenergetics, Institute of Structural and Molecular Biology, University College London, Gower Street, London WC1E 6BT, UK;3. Centre de Génétique Moléculaire du CNRS, UPR 3404, avenue de la Terrasse, 91198 Gif-sur-Yvette Cedex, France
Abstract:We have studied internal electron transfer during the reaction of Saccharomyces cerevisiae mitochondrial cytochrome c oxidase with dioxygen. Similar absorbance changes were observed with this yeast oxidase as with the previously studied Rhodobacter sphaeroides and bovine mitochondrial oxidases, which suggests that the reaction proceeds along the same trajectory. However, notable differences were observed in rates and electron-transfer equilibrium constants of specific reaction steps, for example the ferryl (F) to oxidized (O) reaction was faster with the yeast (0.4 ms) than with the bovine oxidase (~ 1 ms) and a larger fraction CuA was oxidized with the yeast than with the bovine oxidase in the peroxy (PR) to F reaction. Furthermore, upon replacement of Glu243, located at the end of the so-called D proton pathway, by Asp the PR → F and F → O reactions were slowed by factors of ~ 3 and ~ 10, respectively, and electron transfer from CuA to heme a during the PR → F reaction was not observed. These data indicate that during reduction of dioxygen protons are transferred through the D pathway, via Glu243, to the catalytic site in the yeast mitochondrial oxidase. This article is part of a Special Issue entitled: 18th European Bioenergetic Conference.
Keywords:CytcO  cytochrome c oxidase  n side  negative side of the membrane  p side  positive side of the membrane  R" target="_blank">R  the four-electron reduced CytcO  A" target="_blank">A  reduced CytcO with O2 bound to heme a3  PR" target="_blank">PR  the &ldquo  peroxy&rdquo  state formed after transfer of a third electron to the catalytic site  F" target="_blank">F  PR" target="_blank">the ferryl state formed at the catalytic site after protonation of PR  O" target="_blank">O  the oxidized CytcO  SU  subunit  WT  wild-type
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