Please use this identifier to cite or link to this item: https://hdl.handle.net/20.500.14279/2226
Title: Discrete steps in dioxygen activation - the cytochrome oxidase/O2 reaction
Authors: Babcock, Gerald T. 
Varotsis, Constantinos 
Major Field of Science: Social Sciences
Keywords: Cytochrome oxidase;Hemoproteins;Oxygen;Electron transport;Oxidation-reduction reaction
Issue Date: Apr-1993
Source: Journal of bioenergetics and biomembranes, 1993, vol. 25, no. 2, pp. 71-80
Volume: 25
Issue: 2
Start page: 71
End page: 80
Journal: Journal of Βioenergetics and Βiomembranes 
Abstract: The kinetic constraints that are imposed on cytochrome oxidase in its dual function as the terminal oxidant in the respiratory process and as a redox- linked proton pump provide a unique opportunity to investigate the molecular details of biological O2 activation. By using flow/flash techniques, it is possible to visualize individual steps in the O2-binding and reduction process, and results from a number of spectroscopic investigations on the oxidation of reduced cytochrome oxidase by O2 are now available. In this article, we use these results to synthesize a reaction mechanism for O2 activation in the enzyme and to simulate time-concentration profiles for a number of intermediates that have been observed experimentally. Kinetic manifestation of the consequences of coupling exergonic electron transfer to endergonic proton translocation emerge from this analysis. Energetic efficiency in this process apparently requires that potentially toxic intermediate oxidation states of dioxygen accumulate to substantial concentration during the reduction reaction
URI: https://hdl.handle.net/20.500.14279/2226
ISSN: 15736881
DOI: 10.1007/BF00762849
Rights: © Springer
Type: Article
Affiliation: Michigan State University 
Affiliation : Michigan State University 
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