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Gluconeogenic signals regulate hepcidin gene expression via a CRBN-KLF15 axis

Hepcidin (HAMP) is synthesized in the liver. It is a key iron-regulatory hormone that controls systemic iron homeostasis. Cereblon (CRBN) and Kruppel-like factor 15 (KLF15) are known to regulate diverse physiological functions. In this study, we investigated the role of CRBN on hepatic hepcidin gene...

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Autores principales: Jo, Jeong-Rang, Lee, Sung-Eun, An, Seungwon, Nedumaran, Balachandar, Ghosh, Swati, Park, Keun-Gyu, Kim, Yong Deuk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8093939/
https://www.ncbi.nlm.nih.gov/pubmed/33795032
http://dx.doi.org/10.5483/BMBRep.2021.54.4.215
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author Jo, Jeong-Rang
Lee, Sung-Eun
An, Seungwon
Nedumaran, Balachandar
Ghosh, Swati
Park, Keun-Gyu
Kim, Yong Deuk
author_facet Jo, Jeong-Rang
Lee, Sung-Eun
An, Seungwon
Nedumaran, Balachandar
Ghosh, Swati
Park, Keun-Gyu
Kim, Yong Deuk
author_sort Jo, Jeong-Rang
collection PubMed
description Hepcidin (HAMP) is synthesized in the liver. It is a key iron-regulatory hormone that controls systemic iron homeostasis. Cereblon (CRBN) and Kruppel-like factor 15 (KLF15) are known to regulate diverse physiological functions. In this study, we investigated the role of CRBN on hepatic hepcidin gene expression and production under gluconeogenic stimuli. Fasted mice as well as forskolin (FSK)- and glucagon (GLU)-treated mice had reduced serum iron levels but increased expression levels of hepatic Crbn and Klf15 and hepcidin secretion. MicroRNA (miRNA) expression analysis of fasted and Ad-Crbn-infected mice revealed significant reduction of microRNA-639 (miR-639). Hepatic overexpression of Crbn elevated hepcidin expression and production along with Klf15 gene expression, whereas knockdown of Crbn and Klf15 markedly decreased FSK- and fasting-mediated induction of hepcidin gene expression and its biosynthesis in mouse livers and primary hepatocytes. Moreover, expression of KLF15 significantly increased the activity of hepcidin reporter gene. It was exclusively dependent on the KLF15-binding site identified within the hepcidin gene promoter. Overall, this study demonstrates that CRBN and KLF15 are novel mediators of gluconeogenic signal-induced hepcidin gene expression and production. Thus, CRBN and KLF15 might be novel potential therapeutic targets to intervene metabolic dysfunction.
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spelling pubmed-80939392021-05-13 Gluconeogenic signals regulate hepcidin gene expression via a CRBN-KLF15 axis Jo, Jeong-Rang Lee, Sung-Eun An, Seungwon Nedumaran, Balachandar Ghosh, Swati Park, Keun-Gyu Kim, Yong Deuk BMB Rep Article Hepcidin (HAMP) is synthesized in the liver. It is a key iron-regulatory hormone that controls systemic iron homeostasis. Cereblon (CRBN) and Kruppel-like factor 15 (KLF15) are known to regulate diverse physiological functions. In this study, we investigated the role of CRBN on hepatic hepcidin gene expression and production under gluconeogenic stimuli. Fasted mice as well as forskolin (FSK)- and glucagon (GLU)-treated mice had reduced serum iron levels but increased expression levels of hepatic Crbn and Klf15 and hepcidin secretion. MicroRNA (miRNA) expression analysis of fasted and Ad-Crbn-infected mice revealed significant reduction of microRNA-639 (miR-639). Hepatic overexpression of Crbn elevated hepcidin expression and production along with Klf15 gene expression, whereas knockdown of Crbn and Klf15 markedly decreased FSK- and fasting-mediated induction of hepcidin gene expression and its biosynthesis in mouse livers and primary hepatocytes. Moreover, expression of KLF15 significantly increased the activity of hepcidin reporter gene. It was exclusively dependent on the KLF15-binding site identified within the hepcidin gene promoter. Overall, this study demonstrates that CRBN and KLF15 are novel mediators of gluconeogenic signal-induced hepcidin gene expression and production. Thus, CRBN and KLF15 might be novel potential therapeutic targets to intervene metabolic dysfunction. Korean Society for Biochemistry and Molecular Biology 2021-04-30 2021-04-30 /pmc/articles/PMC8093939/ /pubmed/33795032 http://dx.doi.org/10.5483/BMBRep.2021.54.4.215 Text en Copyright © 2021 by the The Korean Society for Biochemistry and Molecular Biology https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0 (https://creativecommons.org/licenses/by-nc/4.0/) ) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Jo, Jeong-Rang
Lee, Sung-Eun
An, Seungwon
Nedumaran, Balachandar
Ghosh, Swati
Park, Keun-Gyu
Kim, Yong Deuk
Gluconeogenic signals regulate hepcidin gene expression via a CRBN-KLF15 axis
title Gluconeogenic signals regulate hepcidin gene expression via a CRBN-KLF15 axis
title_full Gluconeogenic signals regulate hepcidin gene expression via a CRBN-KLF15 axis
title_fullStr Gluconeogenic signals regulate hepcidin gene expression via a CRBN-KLF15 axis
title_full_unstemmed Gluconeogenic signals regulate hepcidin gene expression via a CRBN-KLF15 axis
title_short Gluconeogenic signals regulate hepcidin gene expression via a CRBN-KLF15 axis
title_sort gluconeogenic signals regulate hepcidin gene expression via a crbn-klf15 axis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8093939/
https://www.ncbi.nlm.nih.gov/pubmed/33795032
http://dx.doi.org/10.5483/BMBRep.2021.54.4.215
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