Glutathione-mediated destabilization in vitro of [2Fe-2S] centers in the SoxR regulatory protein.
Open Access
- 3 September 1996
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 93 (18) , 9449-9453
- https://doi.org/10.1073/pnas.93.18.9449
Abstract
SoxR is a transcription factor that governs a global defense against the oxidative stress caused by nitric oxide or excess superoxide in Escherichia coli. SoxR is a homodimer containing a pair of [2Fe-2S] clusters essential for its transcriptional activity, and changes in the stability of these metal centers could contribute to the activation or inactivation of SoxR in vivo. Herein we show that reduced glutathione (GSH) in aerobic solution disrupts the SoxR [2Fe-2S] clusters, releasing Fe from the protein and eliminating SoxR transcriptional activity. This disassembly process evidently involves oxygen-derived free radicals. The loss of [2Fe-2S] clusters does not occur in anaerobic solution and is blocked in aerobic solution by the addition of superoxide dismutase and catalase. Although H2O2 or xanthine oxidase and hypoxanthine (to generate superoxide) were insufficient on their own to cause [2Fe-2S] cluster loss, they did accelerate the rate of disassembly after GSH addition. Oxidized GSH alone was ineffective in disrupting the clusters, but the rate of [2Fe-2S] cluster disassembly was maximal when reduced and oxidized GSH were present at a ratio of approximately 1:3, which suggests the critical involvement of a GSH-based free radical in the disassembly process. Such a reaction might occur in vivo: we found that the induction by paraquat of SoxR-dependent soxS transcription was much higher in a GSH-deficient E. coli strain than in its GSH-containing parent. The results imply that GSH may play a significant role during the deactivation process of SoxR in vivo. Ironically, superoxide production seems both to activate SoxR and, in the GSH-dependent disassembly process, to switch off this transcription factor.Keywords
This publication has 22 references indexed in Scilit:
- Sequence specificity for DNA binding by Escherichia coli SoxS and Rob proteinsMolecular Microbiology, 1996
- Redox control of gene expression involving iron‐sulfur proteins. Change of oxidation‐state or assembly/disassembly of Fe‐S clusters?FEBS Letters, 1996
- Activation of SoxR-dependent Transcription in Vitro by Noncatalytic or NifS-mediated Assembly of [2Fe-2S[ Clusters into Apo-SoxRPublished by Elsevier ,1996
- Binuclear [2Fe-2S] Clusters in the Escherichia coli SoxR Protein and Role of the Metal Centers in TranscriptionPublished by Elsevier ,1995
- Overproduction and Physical Characterization of SoxR, a [2Fe-2S] Protein That Governs an Oxidative Response Regulon in Escherichia coliPublished by Elsevier ,1995
- DNA-bend modulation in a repressor-to-activator switching mechanismNature, 1995
- Enzymatic/Nonenzymatic Sources of Oxyradicals and Regulation of Antioxidant DefensesaAnnals of the New York Academy of Sciences, 1994
- The Pecking Order of Free Radicals and Antioxidants: Lipid Peroxidation, α-Tocopherol, and AscorbateArchives of Biochemistry and Biophysics, 1993
- Oxidized Redox State of Glutathione in the Endoplasmic ReticulumScience, 1992
- Allosteric underwinding of DNA is a critical step in positive control of transcription by Hg-MerRNature, 1992