A consensus structure for the active site of terminal oxidases has been recently proposed by Hosler et al. [(1993) J. Bioenerg. Biomem. 25, 121-1351]. We exploit the novel structural information to propose a hypothesis for the large difference in the rate of internal electron transfer found when experiments are started either with the reduced or with the oxidized enzyme. This rationale also allows us to discuss the oxidation state of the prevailing oxygen reacting species with reference to the concentration of the two substrates (oxygen and cytochrome c) and to the structural state of the oxidase. © 1994.

Electron transfer and ligand binding in terminal oxidases Impact of recent structural information

Giuffrè A;
1994

Abstract

A consensus structure for the active site of terminal oxidases has been recently proposed by Hosler et al. [(1993) J. Bioenerg. Biomem. 25, 121-1351]. We exploit the novel structural information to propose a hypothesis for the large difference in the rate of internal electron transfer found when experiments are started either with the reduced or with the oxidized enzyme. This rationale also allows us to discuss the oxidation state of the prevailing oxygen reacting species with reference to the concentration of the two substrates (oxygen and cytochrome c) and to the structural state of the oxidase. © 1994.
1994
Istituto di Biologia e Patologia Molecolari - IBPM
cytochrome c oxidase
oxygen
article
electron transport
enzyme active site
enzyme kinetics
enzyme structure
hypothesis
ligand binding
priority journal
Amino Acid Sequence
Binding Sites
Cytochrome-c Oxidase
Electron Transport
Ligands
Molecular Sequence Data
Oxidation-Reduction
Support
Non-U.S. Gov't
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/241532
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