Utilize este identificador para referenciar este registo: https://hdl.handle.net/10316/112594
Título: The mammalian peroxisomal membrane is permeable to both GSH and GSSG - Implications for intraperoxisomal redox homeostasis
Autor: Ferreira, Maria J.
Rodrigues, Tony A.
Pedrosa, Ana G.
Gales, Luís
Salvador, Armindo 
Francisco, Tânia
Azevedo, Jorge E.
Palavras-chave: Peroxisome; Glutathione; Membrane permeability; Glutaredoxin; Protein import; Kinetic simulation
Data: Jul-2023
Editora: Elsevier
Projeto: This work was funded by FEDER (Fundo Europeu de Desenvolvimento Regional), through COMPETE 2020-Operational Programme for Competitiveness and Internationalization (POCI), Portugal 2020, and by Portuguese funds through Fundaç˜ao para a Ciˆencia e Tecnologia (FCT)/ Minist´erio da Ciˆencia, Tecnologia e Ensino Superior in the framework of the projects: UIDB/04293/2020, “Institute for Research and Innovation in Health Sciences” (POCI-01-0145-FEDER-007274); “Center for Innovative Biomedicine and Biotechnology”, UIDB/04539/2020, UIDP/ 04539/2020, LA/P/0058/2020; “Coimbra Chemistry Center — Institute of Molecular Sciences” UIDB/00313/2020, UIDP/00313/2020, “Investigating the molecular mechanisms of mammalian pexophagy” (EXPL/ BIA-MOL/1664/2021); “A new component of the mammalian peroxisomal protein import machinery”, (2022.08378.PTDC), and through Norte 2020 - Programa Operacional Regional do Norte, under the application of the “Porto Neurosciences and Neurologic Disease Research Initiative at i3S” (NORTE-01-0145-FEDER-000008). MJF, TAR, AGP and TF are supported by Fundaç˜ao para a Ciˆencia e Tecnologia, Programa Operacional Potencial Humano do QREN and Fundo Social Europeu. 
Título da revista, periódico, livro ou evento: Redox Biology
Volume: 63
Resumo: Despite the large amounts of H2O2 generated in mammalian peroxisomes, cysteine residues of intraperoxisomal proteins are maintained in a reduced state. The biochemistry behind this phenomenon remains unexplored, and simple questions such as "is the peroxisomal membrane permeable to glutathione?" or "is there a thiol-disulfide oxidoreductase in the organelle matrix?" still have no answer. We used a cell-free in vitro system to equip rat liver peroxisomes with a glutathione redox sensor. The organelles were then incubated with glutathione solutions of different redox potentials and the oxidation/reduction kinetics of the redox sensor was monitored. The data suggest that the mammalian peroxisomal membrane is promptly permeable to both reduced and oxidized glutathione. No evidence for the presence of a robust thiol-disulfide oxidoreductase in the peroxisomal matrix could be found. Also, prolonged incubation of organelle suspensions with glutaredoxin 1 did not result in the internalization of the enzyme. To explore a potential role of glutathione in intraperoxisomal redox homeostasis we performed kinetic simulations. The results suggest that even in the absence of a glutaredoxin, glutathione is more important in protecting cysteine residues of matrix proteins from oxidation by H2O2 than peroxisomal catalase itself.
URI: https://hdl.handle.net/10316/112594
ISSN: 22132317
DOI: 10.1016/j.redox.2023.102764
Direitos: openAccess
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