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Functional Analysis of GSTK1 in Peroxisomal Redox Homeostasis in HEK-293 Cells

Peroxisomes serve as important centers for cellular redox metabolism and communication. However, fundamental gaps remain in our understanding of how the peroxisomal redox equilibrium is maintained. In particular, very little is known about the function of the nonenzymatic antioxidant glutathione in...

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Autores principales: Costa, Cláudio F., Lismont, Celien, Chornyi, Serhii, Li, Hongli, Hussein, Mohamed A. F., Waterham, Hans R., Fransen, Marc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10295636/
https://www.ncbi.nlm.nih.gov/pubmed/37371965
http://dx.doi.org/10.3390/antiox12061236
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author Costa, Cláudio F.
Lismont, Celien
Chornyi, Serhii
Li, Hongli
Hussein, Mohamed A. F.
Waterham, Hans R.
Fransen, Marc
author_facet Costa, Cláudio F.
Lismont, Celien
Chornyi, Serhii
Li, Hongli
Hussein, Mohamed A. F.
Waterham, Hans R.
Fransen, Marc
author_sort Costa, Cláudio F.
collection PubMed
description Peroxisomes serve as important centers for cellular redox metabolism and communication. However, fundamental gaps remain in our understanding of how the peroxisomal redox equilibrium is maintained. In particular, very little is known about the function of the nonenzymatic antioxidant glutathione in the peroxisome interior and how the glutathione antioxidant system balances with peroxisomal protein thiols. So far, only one human peroxisomal glutathione-consuming enzyme has been identified: glutathione S-transferase 1 kappa (GSTK1). To study the role of this enzyme in peroxisomal glutathione regulation and function, a GSTK1-deficient HEK-293 cell line was generated and fluorescent redox sensors were used to monitor the intraperoxisomal GSSG/GSH and NAD(+)/NADH redox couples and NADPH levels. We provide evidence that ablation of GSTK1 does not change the basal intraperoxisomal redox state but significantly extends the recovery period of the peroxisomal glutathione redox sensor po-roGFP2 upon treatment of the cells with thiol-specific oxidants. Given that this delay (i) can be rescued by reintroduction of GSTK1, but not its S16A active site mutant, and (ii) is not observed with a glutaredoxin-tagged version of po-roGFP2, our findings demonstrate that GSTK1 contains GSH-dependent disulfide bond oxidoreductase activity.
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spelling pubmed-102956362023-06-28 Functional Analysis of GSTK1 in Peroxisomal Redox Homeostasis in HEK-293 Cells Costa, Cláudio F. Lismont, Celien Chornyi, Serhii Li, Hongli Hussein, Mohamed A. F. Waterham, Hans R. Fransen, Marc Antioxidants (Basel) Article Peroxisomes serve as important centers for cellular redox metabolism and communication. However, fundamental gaps remain in our understanding of how the peroxisomal redox equilibrium is maintained. In particular, very little is known about the function of the nonenzymatic antioxidant glutathione in the peroxisome interior and how the glutathione antioxidant system balances with peroxisomal protein thiols. So far, only one human peroxisomal glutathione-consuming enzyme has been identified: glutathione S-transferase 1 kappa (GSTK1). To study the role of this enzyme in peroxisomal glutathione regulation and function, a GSTK1-deficient HEK-293 cell line was generated and fluorescent redox sensors were used to monitor the intraperoxisomal GSSG/GSH and NAD(+)/NADH redox couples and NADPH levels. We provide evidence that ablation of GSTK1 does not change the basal intraperoxisomal redox state but significantly extends the recovery period of the peroxisomal glutathione redox sensor po-roGFP2 upon treatment of the cells with thiol-specific oxidants. Given that this delay (i) can be rescued by reintroduction of GSTK1, but not its S16A active site mutant, and (ii) is not observed with a glutaredoxin-tagged version of po-roGFP2, our findings demonstrate that GSTK1 contains GSH-dependent disulfide bond oxidoreductase activity. MDPI 2023-06-07 /pmc/articles/PMC10295636/ /pubmed/37371965 http://dx.doi.org/10.3390/antiox12061236 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Costa, Cláudio F.
Lismont, Celien
Chornyi, Serhii
Li, Hongli
Hussein, Mohamed A. F.
Waterham, Hans R.
Fransen, Marc
Functional Analysis of GSTK1 in Peroxisomal Redox Homeostasis in HEK-293 Cells
title Functional Analysis of GSTK1 in Peroxisomal Redox Homeostasis in HEK-293 Cells
title_full Functional Analysis of GSTK1 in Peroxisomal Redox Homeostasis in HEK-293 Cells
title_fullStr Functional Analysis of GSTK1 in Peroxisomal Redox Homeostasis in HEK-293 Cells
title_full_unstemmed Functional Analysis of GSTK1 in Peroxisomal Redox Homeostasis in HEK-293 Cells
title_short Functional Analysis of GSTK1 in Peroxisomal Redox Homeostasis in HEK-293 Cells
title_sort functional analysis of gstk1 in peroxisomal redox homeostasis in hek-293 cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10295636/
https://www.ncbi.nlm.nih.gov/pubmed/37371965
http://dx.doi.org/10.3390/antiox12061236
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