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A Strong Anti-Inflammatory Signature Revealed by Liver Transcription Profiling of Tmprss6−/− Mice

Control of systemic iron homeostasis is interconnected with the inflammatory response through the key iron regulator, the antimicrobial peptide hepcidin. We have previously shown that mice with iron deficiency anemia (IDA)-low hepcidin show a pro-inflammatory response that is blunted in iron deficie...

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Autores principales: Riba, Michela, Rausa, Marco, Sorosina, Melissa, Cittaro, Davide, Garcia Manteiga, Jose Manuel, Nai, Antonella, Pagani, Alessia, Martinelli-Boneschi, Filippo, Stupka, Elia, Camaschella, Clara, Silvestri, Laura
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3726786/
https://www.ncbi.nlm.nih.gov/pubmed/23922777
http://dx.doi.org/10.1371/journal.pone.0069694
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author Riba, Michela
Rausa, Marco
Sorosina, Melissa
Cittaro, Davide
Garcia Manteiga, Jose Manuel
Nai, Antonella
Pagani, Alessia
Martinelli-Boneschi, Filippo
Stupka, Elia
Camaschella, Clara
Silvestri, Laura
author_facet Riba, Michela
Rausa, Marco
Sorosina, Melissa
Cittaro, Davide
Garcia Manteiga, Jose Manuel
Nai, Antonella
Pagani, Alessia
Martinelli-Boneschi, Filippo
Stupka, Elia
Camaschella, Clara
Silvestri, Laura
author_sort Riba, Michela
collection PubMed
description Control of systemic iron homeostasis is interconnected with the inflammatory response through the key iron regulator, the antimicrobial peptide hepcidin. We have previously shown that mice with iron deficiency anemia (IDA)-low hepcidin show a pro-inflammatory response that is blunted in iron deficient-high hepcidin Tmprss6 KO mice. The transcriptional response associated with chronic hepcidin overexpression due to genetic inactivation of Tmprss6 is unknown. By using whole genome transcription profiling of the liver and analysis of spleen immune-related genes we identified several functional pathways differentially expressed in Tmprss6 KO mice, compared to IDA animals and thus irrespective of the iron status. In the effort of defining genes potentially targets of Tmprss6 we analyzed liver gene expression changes according to the genotype and independently of treatment. Tmprss6 inactivation causes down-regulation of liver pathways connected to immune and inflammatory response as well as spleen genes related to macrophage activation and inflammatory cytokines production. The anti-inflammatory status of Tmprss6 KO animals was confirmed by the down-regulation of pathways related to immunity, stress response and intracellular signaling in both liver and spleen after LPS treatment. Opposite to Tmprss6 KO mice, Hfe(−/−) mice are characterized by iron overload with inappropriately low hepcidin levels. Liver expression profiling of Hfe(−/−) deficient versus iron loaded mice show the opposite expression of some of the genes modulated by the loss of Tmprss6. Altogether our results confirm the anti-inflammatory status of Tmprss6 KO mice and identify new potential target pathways/genes of Tmprss6.
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spelling pubmed-37267862013-08-06 A Strong Anti-Inflammatory Signature Revealed by Liver Transcription Profiling of Tmprss6−/− Mice Riba, Michela Rausa, Marco Sorosina, Melissa Cittaro, Davide Garcia Manteiga, Jose Manuel Nai, Antonella Pagani, Alessia Martinelli-Boneschi, Filippo Stupka, Elia Camaschella, Clara Silvestri, Laura PLoS One Research Article Control of systemic iron homeostasis is interconnected with the inflammatory response through the key iron regulator, the antimicrobial peptide hepcidin. We have previously shown that mice with iron deficiency anemia (IDA)-low hepcidin show a pro-inflammatory response that is blunted in iron deficient-high hepcidin Tmprss6 KO mice. The transcriptional response associated with chronic hepcidin overexpression due to genetic inactivation of Tmprss6 is unknown. By using whole genome transcription profiling of the liver and analysis of spleen immune-related genes we identified several functional pathways differentially expressed in Tmprss6 KO mice, compared to IDA animals and thus irrespective of the iron status. In the effort of defining genes potentially targets of Tmprss6 we analyzed liver gene expression changes according to the genotype and independently of treatment. Tmprss6 inactivation causes down-regulation of liver pathways connected to immune and inflammatory response as well as spleen genes related to macrophage activation and inflammatory cytokines production. The anti-inflammatory status of Tmprss6 KO animals was confirmed by the down-regulation of pathways related to immunity, stress response and intracellular signaling in both liver and spleen after LPS treatment. Opposite to Tmprss6 KO mice, Hfe(−/−) mice are characterized by iron overload with inappropriately low hepcidin levels. Liver expression profiling of Hfe(−/−) deficient versus iron loaded mice show the opposite expression of some of the genes modulated by the loss of Tmprss6. Altogether our results confirm the anti-inflammatory status of Tmprss6 KO mice and identify new potential target pathways/genes of Tmprss6. Public Library of Science 2013-07-29 /pmc/articles/PMC3726786/ /pubmed/23922777 http://dx.doi.org/10.1371/journal.pone.0069694 Text en © 2013 Riba et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Riba, Michela
Rausa, Marco
Sorosina, Melissa
Cittaro, Davide
Garcia Manteiga, Jose Manuel
Nai, Antonella
Pagani, Alessia
Martinelli-Boneschi, Filippo
Stupka, Elia
Camaschella, Clara
Silvestri, Laura
A Strong Anti-Inflammatory Signature Revealed by Liver Transcription Profiling of Tmprss6−/− Mice
title A Strong Anti-Inflammatory Signature Revealed by Liver Transcription Profiling of Tmprss6−/− Mice
title_full A Strong Anti-Inflammatory Signature Revealed by Liver Transcription Profiling of Tmprss6−/− Mice
title_fullStr A Strong Anti-Inflammatory Signature Revealed by Liver Transcription Profiling of Tmprss6−/− Mice
title_full_unstemmed A Strong Anti-Inflammatory Signature Revealed by Liver Transcription Profiling of Tmprss6−/− Mice
title_short A Strong Anti-Inflammatory Signature Revealed by Liver Transcription Profiling of Tmprss6−/− Mice
title_sort strong anti-inflammatory signature revealed by liver transcription profiling of tmprss6−/− mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3726786/
https://www.ncbi.nlm.nih.gov/pubmed/23922777
http://dx.doi.org/10.1371/journal.pone.0069694
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