Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8324422 | The International Journal of Biochemistry & Cell Biology | 2013 | 7 Pages |
Abstract
Peroxiredoxin 6 (Prdx6) is a 1-Cys member of the peroxiredoxin superfamily that plays an important role in antioxidant defense. Glutathionylation of recombinant Prdx6 mediated by Ï glutathione S-transferase (GST) is required for reduction of the oxidized Cys and completion of the peroxidatic catalytic cycle in vitro. This study investigated the requirement for ÏGST in intact cells. Transfection with a plasmid construct expressing ÏGST into MCF7, a cell line that lacks endogenous ÏGST, significantly increased phospholipid peroxidase activity as measured in cell lysates and protected intact cells against a peroxidative stress. siRNA knockdown indicated that this increased peroxidase activity was Prdx6 dependent. Interaction between ÏGST and Prdx6, evaluated by the Duolink Proximity Ligation Assay, was minimal under basal conditions but increased dramatically following treatment of cells with the oxidant, tert-butyl hydroperoxide. Interaction was abolished by mutation of C47, the active site for Prdx6 peroxidase activity. Depletion of cellular GSH by treatment of cells with buthionine sulfoximine had no effect on the interaction of Prdx6 and ÏGST. These data are consistent with the hypothesis that oxidation of the catalytic cysteine in Prdx6 is required for its interaction with ÏGST and that the interaction plays an important role in regenerating the peroxidase activity of Prdx6.
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Authors
Suiping Zhou, Yu-Chin Lien, Tea Shuvaeva, Kristine DeBolt, Sheldon I. Feinstein, Aron B. Fisher,