The hepcidin-ferroportin axis modulates liver endothelial cell BMP expression to influence iron homeostasis in mice

A Allison L. Fisher (1Nephrology Division and Endocrine Unit, Massachusetts General Hospital, Harvard Medical School, Boston, MA) S Sydney Phillips (2Massachusetts General Hospital, Nephrology Division and Endocrine Unit, Boston, United States) C Chia-Yu Wang (1Nephrology Division and Endocrine Unit, Massachusetts General Hospital, Harvard Medical School, Boston, MA) J Joao A. Paulo X Xia Xiao Y Yang Xu G Gillian A. Moschetta (1Nephrology Division and Endocrine Unit, Massachusetts General Hospital, Harvard Medical School, Boston, MA) Y Yongqiang Xue (2Massachusetts General Hospital, Nephrology Division and Endocrine Unit, Boston, United States) J Joseph D. Mancias J Jodie L. Babitt (1Massachusetts General Hospital)

Abstract

Abstract The liver hormone hepcidin regulates systemic iron homeostasis to provide enough iron for vital processes while limiting toxicity. Hepcidin acts by degrading its receptor ferroportin (encoded by Slc40a1) to decrease iron export to plasma. Iron controls hepcidin production in part by inducing liver endothelial cells (LECs) to produce bone morphogenetic proteins (BMPs) that activate hepcidin transcription in hepatocytes. Here, we used in vitro and in vivo models to investigate whether ferroportin contributes to LEC intracellular iron content to modulate BMP expression and, thereby, hepcidin. Quantitative proteomics of LECs from mice fed different iron diets demonstrated an inverse relationship between dietary iron and endothelial ferroportin expression. Slc40a1 knockdown primary mouse LECs and endothelial Slc40a1 knockout mice exhibited increased LEC iron and BMP ligand expression. Endothelial Slc40a1 knockout mice also exhibited altered systemic iron homeostasis with decreased serum and total liver iron but preserved erythropoiesis. Although endothelial Slc40a1 knockout mice had similar hepcidin expression to control mice, hepcidin levels were inappropriately high relative to iron levels. Moreover, when iron levels were equalized with iron treatment, hepcidin levels were higher in endothelial Slc40a1 knockout mice than in controls. Finally, LEC ferroportin levels were inversely correlated with hepcidin levels in multiple mouse models, and treatment of hepcidin-deficient mice with mini-hepcidin decreased LEC ferroportin expression. Overall, these data show that LEC ferroportin modulates LEC iron and consequently BMP expression to influence hepcidin production. Furthermore, LEC ferroportin expression is regulated by hepcidin, demonstrating a bidirectional communication between LECs and hepatocytes to orchestrate systemic iron homeostasis.

Article Details

Journal Blood
Volume / Issue Vol. 145, Issue 6
Published February 06, 2025
Pages 625-634
ISSN 0006-4971
Publisher Elsevier BV

Journal Info

Blood

Elsevier BV

ISSN: 0006-4971 Health Sciences

Authors (10)

A

Allison L. Fisher

1Nephrology Division and Endocrine Unit, Massachusetts General Hospital, Harvard Medical School, Boston, MA

S

Sydney Phillips

2Massachusetts General Hospital, Nephrology Division and Endocrine Unit, Boston, United States

C

Chia-Yu Wang

1Nephrology Division and Endocrine Unit, Massachusetts General Hospital, Harvard Medical School, Boston, MA

J

Joao A. Paulo

X

Xia Xiao

Y

Yang Xu

G

Gillian A. Moschetta

1Nephrology Division and Endocrine Unit, Massachusetts General Hospital, Harvard Medical School, Boston, MA

Y

Yongqiang Xue

2Massachusetts General Hospital, Nephrology Division and Endocrine Unit, Boston, United States

J

Joseph D. Mancias

J

Jodie L. Babitt

1Massachusetts General Hospital