Role of Superoxide Anions in the Redox Changes Affecting the Physiologically Occurring Cu(I)-Glutathione Complex

Author:

Speisky Hernán12,López-Alarcón Camilo3,Olea-Azar Claudio2,Sandoval-Acuña Cristian1,Aliaga Margarita E.3

Affiliation:

1. Nutrition and Food Technology Institute, University of Chile, Santiago 7830489, Chile

2. Faculty of Chemical and Pharmaceutical Sciences, University of Chile, Santiago 8380492, Chile

3. Facultad de Química, Pontificia Universidad Católica de Chile, Santiago 6094411, Chile

Abstract

The physiologically occurring copper-glutathione complex, [Cu(I)-[GSH]2], has the ability to react continually with oxygen, generating superoxide anions (). We addressed here the effects that superoxide removal has on the redox state of Cu(I) and GSH present in such complex and assessed the formation of Cu(II)-GSSG as a final oxidation product. In addition, we investigated the potential of a source of external to the Cu(I)-[GSH]2complex to prevent its oxidation. Removal of from a Cu(I)-[GSH]2-containing solution, whether spontaneous or Tempol-induced, led to time-dependent losses in GSH that were greater than those affecting the metal. The losses in GSH were not accompanied by increments in GSSG but were largely accounted for by the cumulative formation of Cu(II)-GSSG molecules. Notably, the redox changes in Cu(I) and GSH were totally prevented when Cu(I)-[GSH]2was coincubated with hypoxanthine/xanthine oxidase. Data suggest that the generation of by Cu(I)-[GSH]2implies the obliged formation of an intermediate whose subsequent oxidation into Cu(II)-GSSG or back reduction into Cu(I)-[GSH]2is favoured by either the removal or the addition of , respectively.

Publisher

Hindawi Limited

Subject

Inorganic Chemistry,Organic Chemistry,Biochemistry

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