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Thioredoxin Dependent Changes in the Redox States of FurA from Anabaena sp. PCC 7120

FurA is a multifunctional regulator in cyanobacteria that contains five cysteines, four of them arranged into two CXXC motifs. Lack of a structural zinc ion enables FurA to develop disulfide reductase activity. In vivo, FurA displays several redox isoforms, and the oxidation state of its cysteines d...

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Autores principales: Guío, Jorge, Bes, María Teresa, Balsera, Mónica, Calvo-Begueria, Laura, Sevilla, Emma, Peleato, María Luisa, Fillat, María F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8229018/
https://www.ncbi.nlm.nih.gov/pubmed/34199999
http://dx.doi.org/10.3390/antiox10060913
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author Guío, Jorge
Bes, María Teresa
Balsera, Mónica
Calvo-Begueria, Laura
Sevilla, Emma
Peleato, María Luisa
Fillat, María F.
author_facet Guío, Jorge
Bes, María Teresa
Balsera, Mónica
Calvo-Begueria, Laura
Sevilla, Emma
Peleato, María Luisa
Fillat, María F.
author_sort Guío, Jorge
collection PubMed
description FurA is a multifunctional regulator in cyanobacteria that contains five cysteines, four of them arranged into two CXXC motifs. Lack of a structural zinc ion enables FurA to develop disulfide reductase activity. In vivo, FurA displays several redox isoforms, and the oxidation state of its cysteines determines its activity as regulator and its ability to bind different metabolites. Because of the relationship between FurA and the control of genes involved in oxidative stress defense and photosynthetic metabolism, we sought to investigate the role of type m thioredoxin TrxA as a potential redox partner mediating dithiol-disulfide exchange reactions necessary to facilitate the interaction of FurA with its different ligands. Both in vitro cross-linking assays and in vivo two-hybrid studies confirmed the interaction between FurA and TrxA. Light to dark transitions resulted in reversible oxidation of a fraction of the regulator present in Anabaena sp. PCC7120. Reconstitution of an electron transport chain using E. coli NADPH-thioredoxin-reductase followed by alkylation of FurA reduced cysteines evidenced the ability of TrxA to reduce FurA. Furthermore, the use of site-directed mutants allowed us to propose a plausible mechanism for FurA reduction. These results point to TrxA as one of the redox partners that modulates FurA performance.
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spelling pubmed-82290182021-06-26 Thioredoxin Dependent Changes in the Redox States of FurA from Anabaena sp. PCC 7120 Guío, Jorge Bes, María Teresa Balsera, Mónica Calvo-Begueria, Laura Sevilla, Emma Peleato, María Luisa Fillat, María F. Antioxidants (Basel) Article FurA is a multifunctional regulator in cyanobacteria that contains five cysteines, four of them arranged into two CXXC motifs. Lack of a structural zinc ion enables FurA to develop disulfide reductase activity. In vivo, FurA displays several redox isoforms, and the oxidation state of its cysteines determines its activity as regulator and its ability to bind different metabolites. Because of the relationship between FurA and the control of genes involved in oxidative stress defense and photosynthetic metabolism, we sought to investigate the role of type m thioredoxin TrxA as a potential redox partner mediating dithiol-disulfide exchange reactions necessary to facilitate the interaction of FurA with its different ligands. Both in vitro cross-linking assays and in vivo two-hybrid studies confirmed the interaction between FurA and TrxA. Light to dark transitions resulted in reversible oxidation of a fraction of the regulator present in Anabaena sp. PCC7120. Reconstitution of an electron transport chain using E. coli NADPH-thioredoxin-reductase followed by alkylation of FurA reduced cysteines evidenced the ability of TrxA to reduce FurA. Furthermore, the use of site-directed mutants allowed us to propose a plausible mechanism for FurA reduction. These results point to TrxA as one of the redox partners that modulates FurA performance. MDPI 2021-06-04 /pmc/articles/PMC8229018/ /pubmed/34199999 http://dx.doi.org/10.3390/antiox10060913 Text en © 2021 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
Guío, Jorge
Bes, María Teresa
Balsera, Mónica
Calvo-Begueria, Laura
Sevilla, Emma
Peleato, María Luisa
Fillat, María F.
Thioredoxin Dependent Changes in the Redox States of FurA from Anabaena sp. PCC 7120
title Thioredoxin Dependent Changes in the Redox States of FurA from Anabaena sp. PCC 7120
title_full Thioredoxin Dependent Changes in the Redox States of FurA from Anabaena sp. PCC 7120
title_fullStr Thioredoxin Dependent Changes in the Redox States of FurA from Anabaena sp. PCC 7120
title_full_unstemmed Thioredoxin Dependent Changes in the Redox States of FurA from Anabaena sp. PCC 7120
title_short Thioredoxin Dependent Changes in the Redox States of FurA from Anabaena sp. PCC 7120
title_sort thioredoxin dependent changes in the redox states of fura from anabaena sp. pcc 7120
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8229018/
https://www.ncbi.nlm.nih.gov/pubmed/34199999
http://dx.doi.org/10.3390/antiox10060913
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