American Journal of Physiology-Lung Cellular and Molecular Physiology · 2004 · 41 citations · 41 references
Lung InflammationLipid PeroxidationImmunologyCell DeathHuman Lung CellsSevere Oxidative StressPrx ViRedox BiologyOxidative StressInflammationVariable OveroxidationRedox RegulatorRespiratory ToxicologyToxicologyCell SignalingAllergyBiochemistryReactive Oxygen SpecieCell BiologyReductive StressSignal TransductionPhysiologyMedicine
Peroxiredoxins (Prxs) are a group of thiol containing proteins that participate both in signal transduction and in the breakdown of hydrogen peroxide (H(2)O(2)) during oxidative stress. Six distinct Prxs have been characterized in human cells (Prxs I-VI). Prxs I-IV form dimers held together by disulfide bonds, Prx V forms intramolecular bond, but the mechanism of Prx VI, so-called 1-Cys Prx, is still unclear. Here we describe the regulation of all six Prxs in cultured human lung A549 and BEAS-2B cells. The cells were exposed to variable concentrations of H(2)O(2), menadione, tumor necrosis factor-alpha or transforming growth factor-beta. To evoke glutathione depletion, the cells were furthermore treated with buthionine sulfoximine. Only high concentrations (300 microM) of H(2)O(2) caused a minor increase (<28%, 4 h) in the expression of Prxs I, IV, and VI. Severe oxidant stress (250-500 microM H(2)O(2)) caused a significant increase in the proportion of the monomeric forms of Prxs I-IV; this was reversible at lower H(2)O(2) concentrations (< or =250 microM). This recovery of Prx overoxidation differed among the various Prxs; Prx I was recovered within 24 h, but recovery required 48 h for Prx III. Overall, Prxs are not significantly modulated by mild oxidant stress or cytokines, but there is variable, though reversible, overoxidation in these proteins during severe oxidant exposure.
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Sang Won Kang, Ho Zoon Chae, Min Seok Seo et al. · Journal of Biological Chemistry · 1998 · 686 citations · Full text
Lipid Peroxidation, Immunology, Hydrogen Peroxide Generated +16
Reversing the Inactivation of Peroxiredoxins Caused by Cysteine Sulfinic Acid Formation
Hyun Ae Woo, Ho Zoon Chae, Sung Chul Hwang et al. · Science · 2003 · 546 citations
Proteomics Analysis of Cellular Response to Oxidative Stress
Thierry Rabilloud, Manfred Heller, Françoise Gasnier et al. · Journal of Biological Chemistry · 2002 · 389 citations · Full text