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Bone-derived C-terminal FGF23 cleaved peptides increase iron availability in acute inflammation

Inflammation leads to functional iron deficiency by increasing the expression of the hepatic iron regulatory peptide hepcidin. Inflammation also stimulates fibroblast growth factor 23 (FGF23) production by increasing both Fgf23 transcription and FGF23 cleavage, which paradoxically leads to excess in...

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Autores principales: Courbon, Guillaume, Thomas, Jane Joy, Martinez-Calle, Marta, Wang, Xueyan, Spindler, Jadeah, Von Drasek, John, Hunt-Tobey, Bridget, Mehta, Rupal, Isakova, Tamara, Chang, Wenhan, Creemers, John W. M., Ji, Peng, Martin, Aline, David, Valentin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society of Hematology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10356820/
https://www.ncbi.nlm.nih.gov/pubmed/37053547
http://dx.doi.org/10.1182/blood.2022018475
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author Courbon, Guillaume
Thomas, Jane Joy
Martinez-Calle, Marta
Wang, Xueyan
Spindler, Jadeah
Von Drasek, John
Hunt-Tobey, Bridget
Mehta, Rupal
Isakova, Tamara
Chang, Wenhan
Creemers, John W. M.
Ji, Peng
Martin, Aline
David, Valentin
author_facet Courbon, Guillaume
Thomas, Jane Joy
Martinez-Calle, Marta
Wang, Xueyan
Spindler, Jadeah
Von Drasek, John
Hunt-Tobey, Bridget
Mehta, Rupal
Isakova, Tamara
Chang, Wenhan
Creemers, John W. M.
Ji, Peng
Martin, Aline
David, Valentin
author_sort Courbon, Guillaume
collection PubMed
description Inflammation leads to functional iron deficiency by increasing the expression of the hepatic iron regulatory peptide hepcidin. Inflammation also stimulates fibroblast growth factor 23 (FGF23) production by increasing both Fgf23 transcription and FGF23 cleavage, which paradoxically leads to excess in C-terminal FGF23 peptides (Cter-FGF23), rather than intact FGF23 (iFGF23) hormone. We determined that the major source of Cter-FGF23 is osteocytes and investigated whether Cter-FGF23 peptides play a direct role in the regulation of hepcidin and iron metabolism in response to acute inflammation. Mice harboring an osteocyte-specific deletion of Fgf23 showed a ∼90% reduction in Cter-FGF23 levels during acute inflammation. Reduction in Cter-FGF23 led to a further decrease in circulating iron in inflamed mice owing to excessive hepcidin production. We observed similar results in mice showing impaired FGF23 cleavage owing to osteocyte-specific deletion of Furin. We next showed that Cter-FGF23 peptides bind members of the bone morphogenetic protein (BMP) family, BMP2 and BMP9, which are established inducers of hepcidin. Coadministration of Cter-FGF23 and BMP2 or BMP9 prevented the increase in Hamp messenger RNA and circulating hepcidin levels induced by BMP2/9, resulting in normal serum iron levels. Finally, injection of Cter-FGF23 in inflamed Fgf23(KO) mice and genetic overexpression of Cter-Fgf23 in wild type mice also resulted in lower hepcidin and higher circulating iron levels. In conclusion, during inflammation, bone is the major source of Cter-FGF23 secretion, and independently of iFGF23, Cter-FGF23 reduces BMP-induced hepcidin secretion in the liver.
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spelling pubmed-103568202023-07-21 Bone-derived C-terminal FGF23 cleaved peptides increase iron availability in acute inflammation Courbon, Guillaume Thomas, Jane Joy Martinez-Calle, Marta Wang, Xueyan Spindler, Jadeah Von Drasek, John Hunt-Tobey, Bridget Mehta, Rupal Isakova, Tamara Chang, Wenhan Creemers, John W. M. Ji, Peng Martin, Aline David, Valentin Blood Red Cells, Iron, and Erythropoiesis Inflammation leads to functional iron deficiency by increasing the expression of the hepatic iron regulatory peptide hepcidin. Inflammation also stimulates fibroblast growth factor 23 (FGF23) production by increasing both Fgf23 transcription and FGF23 cleavage, which paradoxically leads to excess in C-terminal FGF23 peptides (Cter-FGF23), rather than intact FGF23 (iFGF23) hormone. We determined that the major source of Cter-FGF23 is osteocytes and investigated whether Cter-FGF23 peptides play a direct role in the regulation of hepcidin and iron metabolism in response to acute inflammation. Mice harboring an osteocyte-specific deletion of Fgf23 showed a ∼90% reduction in Cter-FGF23 levels during acute inflammation. Reduction in Cter-FGF23 led to a further decrease in circulating iron in inflamed mice owing to excessive hepcidin production. We observed similar results in mice showing impaired FGF23 cleavage owing to osteocyte-specific deletion of Furin. We next showed that Cter-FGF23 peptides bind members of the bone morphogenetic protein (BMP) family, BMP2 and BMP9, which are established inducers of hepcidin. Coadministration of Cter-FGF23 and BMP2 or BMP9 prevented the increase in Hamp messenger RNA and circulating hepcidin levels induced by BMP2/9, resulting in normal serum iron levels. Finally, injection of Cter-FGF23 in inflamed Fgf23(KO) mice and genetic overexpression of Cter-Fgf23 in wild type mice also resulted in lower hepcidin and higher circulating iron levels. In conclusion, during inflammation, bone is the major source of Cter-FGF23 secretion, and independently of iFGF23, Cter-FGF23 reduces BMP-induced hepcidin secretion in the liver. The American Society of Hematology 2023-07-06 2023-04-16 /pmc/articles/PMC10356820/ /pubmed/37053547 http://dx.doi.org/10.1182/blood.2022018475 Text en © 2023 by The American Society of Hematology. Licensed under Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0), permitting only noncommercial, nonderivative use with attribution. All other rights reserved. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Red Cells, Iron, and Erythropoiesis
Courbon, Guillaume
Thomas, Jane Joy
Martinez-Calle, Marta
Wang, Xueyan
Spindler, Jadeah
Von Drasek, John
Hunt-Tobey, Bridget
Mehta, Rupal
Isakova, Tamara
Chang, Wenhan
Creemers, John W. M.
Ji, Peng
Martin, Aline
David, Valentin
Bone-derived C-terminal FGF23 cleaved peptides increase iron availability in acute inflammation
title Bone-derived C-terminal FGF23 cleaved peptides increase iron availability in acute inflammation
title_full Bone-derived C-terminal FGF23 cleaved peptides increase iron availability in acute inflammation
title_fullStr Bone-derived C-terminal FGF23 cleaved peptides increase iron availability in acute inflammation
title_full_unstemmed Bone-derived C-terminal FGF23 cleaved peptides increase iron availability in acute inflammation
title_short Bone-derived C-terminal FGF23 cleaved peptides increase iron availability in acute inflammation
title_sort bone-derived c-terminal fgf23 cleaved peptides increase iron availability in acute inflammation
topic Red Cells, Iron, and Erythropoiesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10356820/
https://www.ncbi.nlm.nih.gov/pubmed/37053547
http://dx.doi.org/10.1182/blood.2022018475
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