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Published on: January 31, 2022
Autocrine formation of hepcidin induces iron retention in human monocytes
Igor Theurl1, Milan Theurl, Markus Seifert
1Department of General Internal Medicine, Medical University, Innsbruck, Innsbruck, Austria.
Abstract:
Hepcidin, a master regulator of iron homeostasis, is produced in small amounts by inflammatory monocytes/macrophages. Chronic immune activation leads to iron retention within monocytes/macrophages and the development of anemia of chronic disease (ACD). We questioned whether monocyte-derived hepcidin exerts autocrine regulation toward cellular iron metabolism. Monocyte hepcidin mRNA expression was significantly induced within 3 hours after stimulation with LPS or IL-6, and hepcidin mRNA expression was significantly higher in monocytes of ACD patients than in controls. In ACD patients, monocyte hepcidin mRNA levels were significantly correlated to serum IL-6 concentrations, and increased monocyte hepcidin mRNA levels were associated with decreased expression of the iron exporter ferroportin and iron retention in these cells. Transient transfection experiments using a ferroportin/EmGFP fusion protein construct demonstrated that LPS inducible hepcidin expression in THP-1 monocytes resulted in internalization and degradation of ferroportin. Transfection of monocytes with siRNA directed against hepcidin almost fully reversed this lipopolysaccharide-mediated effect. Using ferroportin mutation constructs, we found that ferroportin is mainly targeted by hepcidin when expressed on the cell surface. Our results suggest that ferroportin expression in inflammatory monocytes is negatively affected by autocrine formation of hepcidin, thus contributing to iron sequestration within monocytes as found in ACD.
Insights
Monocyte-derived hepcidin (hormone regulating iron) causes iron retention in inflammatory monocytes, contributing to anemia of chronic disease (ACD) by reducing ferroportin (iron exporter). This autocrine loop impacts cellular iron metabolism.
Area of Science:
- Immunology
- Hematology
- Cell Biology
Background:
- Hepcidin regulates iron homeostasis and is produced by monocytes/macrophages.
- Chronic immune activation causes iron retention in monocytes and anemia of chronic disease (ACD).
Purpose of the Study:
- To investigate if monocyte-derived hepcidin autocrinely regulates cellular iron metabolism.
- To explore the role of hepcidin in iron sequestration within monocytes in ACD.
Main Methods:
- Monocyte hepcidin mRNA expression analysis in response to LPS/IL-6 and in ACD patients.
- Correlation analysis between monocyte hepcidin levels, IL-6, ferroportin expression, and cellular iron.
- Functional studies using ferroportin-EmGFP fusion proteins and siRNA in THP-1 monocytes.
Main Results:
- Monocyte hepcidin mRNA expression increased rapidly upon LPS/IL-6 stimulation and was higher in ACD patients.
- ACD patients showed correlation between monocyte hepcidin, IL-6 levels, decreased ferroportin, and iron retention.
- LPS-induced hepcidin expression led to ferroportin internalization/degradation, reversed by hepcidin siRNA.
- Hepcidin primarily targets cell surface-expressed ferroportin.
Conclusions:
- Autocrine hepcidin negatively impacts ferroportin expression in inflammatory monocytes.
- This mechanism contributes to iron sequestration within monocytes, a hallmark of ACD.
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