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A crosstalk between hepcidin and IRE/IRP pathways controls ferroportin expression and determines serum iron levels in mice

The iron hormone hepcidin is transcriptionally activated by iron or inflammation via distinct, partially overlapping pathways. We addressed how iron affects inflammatory hepcidin levels and the ensuing hypoferremic response. Dietary iron overload did not mitigate hepcidin induction in lipopolysaccha...

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Autores principales: Charlebois, Edouard, Fillebeen, Carine, Katsarou, Angeliki, Rabinovich, Aleksandr, Wisniewski, Kazimierz, Venkataramani, Vivek, Michalke, Bernhard, Velentza, Anastasia, Pantopoulos, Kostas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9499557/
https://www.ncbi.nlm.nih.gov/pubmed/36066082
http://dx.doi.org/10.7554/eLife.81332
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author Charlebois, Edouard
Fillebeen, Carine
Katsarou, Angeliki
Rabinovich, Aleksandr
Wisniewski, Kazimierz
Venkataramani, Vivek
Michalke, Bernhard
Velentza, Anastasia
Pantopoulos, Kostas
author_facet Charlebois, Edouard
Fillebeen, Carine
Katsarou, Angeliki
Rabinovich, Aleksandr
Wisniewski, Kazimierz
Venkataramani, Vivek
Michalke, Bernhard
Velentza, Anastasia
Pantopoulos, Kostas
author_sort Charlebois, Edouard
collection PubMed
description The iron hormone hepcidin is transcriptionally activated by iron or inflammation via distinct, partially overlapping pathways. We addressed how iron affects inflammatory hepcidin levels and the ensuing hypoferremic response. Dietary iron overload did not mitigate hepcidin induction in lipopolysaccharide (LPS)-treated wild type mice but prevented effective inflammatory hypoferremia. Likewise, LPS modestly decreased serum iron in hepcidin-deficient Hjv(-/-) mice, model of hemochromatosis. Synthetic hepcidin triggered hypoferremia in control but not iron-loaded wild type animals. Furthermore, it dramatically decreased hepatic and splenic ferroportin in Hjv(-/-) mice on standard or iron-deficient diet, but only triggered hypoferremia in the latter. Mechanistically, iron antagonized hepcidin responsiveness by inactivating IRPs in the liver and spleen to stimulate ferroportin mRNA translation. Prolonged LPS treatment eliminated ferroportin mRNA and permitted hepcidin-mediated hypoferremia in iron-loaded mice. Thus, de novo ferroportin synthesis is a critical determinant of serum iron and finetunes hepcidin-dependent functional outcomes. Our data uncover a crosstalk between hepcidin and IRE/IRP systems that controls tissue ferroportin expression and determines serum iron levels. Moreover, they suggest that hepcidin supplementation therapy is more efficient when combined with iron depletion.
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spelling pubmed-94995572022-09-23 A crosstalk between hepcidin and IRE/IRP pathways controls ferroportin expression and determines serum iron levels in mice Charlebois, Edouard Fillebeen, Carine Katsarou, Angeliki Rabinovich, Aleksandr Wisniewski, Kazimierz Venkataramani, Vivek Michalke, Bernhard Velentza, Anastasia Pantopoulos, Kostas eLife Cell Biology The iron hormone hepcidin is transcriptionally activated by iron or inflammation via distinct, partially overlapping pathways. We addressed how iron affects inflammatory hepcidin levels and the ensuing hypoferremic response. Dietary iron overload did not mitigate hepcidin induction in lipopolysaccharide (LPS)-treated wild type mice but prevented effective inflammatory hypoferremia. Likewise, LPS modestly decreased serum iron in hepcidin-deficient Hjv(-/-) mice, model of hemochromatosis. Synthetic hepcidin triggered hypoferremia in control but not iron-loaded wild type animals. Furthermore, it dramatically decreased hepatic and splenic ferroportin in Hjv(-/-) mice on standard or iron-deficient diet, but only triggered hypoferremia in the latter. Mechanistically, iron antagonized hepcidin responsiveness by inactivating IRPs in the liver and spleen to stimulate ferroportin mRNA translation. Prolonged LPS treatment eliminated ferroportin mRNA and permitted hepcidin-mediated hypoferremia in iron-loaded mice. Thus, de novo ferroportin synthesis is a critical determinant of serum iron and finetunes hepcidin-dependent functional outcomes. Our data uncover a crosstalk between hepcidin and IRE/IRP systems that controls tissue ferroportin expression and determines serum iron levels. Moreover, they suggest that hepcidin supplementation therapy is more efficient when combined with iron depletion. eLife Sciences Publications, Ltd 2022-09-06 /pmc/articles/PMC9499557/ /pubmed/36066082 http://dx.doi.org/10.7554/eLife.81332 Text en © 2022, Charlebois et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Charlebois, Edouard
Fillebeen, Carine
Katsarou, Angeliki
Rabinovich, Aleksandr
Wisniewski, Kazimierz
Venkataramani, Vivek
Michalke, Bernhard
Velentza, Anastasia
Pantopoulos, Kostas
A crosstalk between hepcidin and IRE/IRP pathways controls ferroportin expression and determines serum iron levels in mice
title A crosstalk between hepcidin and IRE/IRP pathways controls ferroportin expression and determines serum iron levels in mice
title_full A crosstalk between hepcidin and IRE/IRP pathways controls ferroportin expression and determines serum iron levels in mice
title_fullStr A crosstalk between hepcidin and IRE/IRP pathways controls ferroportin expression and determines serum iron levels in mice
title_full_unstemmed A crosstalk between hepcidin and IRE/IRP pathways controls ferroportin expression and determines serum iron levels in mice
title_short A crosstalk between hepcidin and IRE/IRP pathways controls ferroportin expression and determines serum iron levels in mice
title_sort crosstalk between hepcidin and ire/irp pathways controls ferroportin expression and determines serum iron levels in mice
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9499557/
https://www.ncbi.nlm.nih.gov/pubmed/36066082
http://dx.doi.org/10.7554/eLife.81332
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