Enhanced erythropoiesis in Hfe-KO mice indicates a role for Hfe in the modulation of erythroid iron homeostasis

Author:

Ramos Pedro12,Guy Ella1,Chen Nan1,Proenca Catia C.3,Gardenghi Sara1,Casu Carla1,Follenzi Antonia4,Van Rooijen Nico5,Grady Robert W.1,de Sousa Maria26,Rivella Stefano1

Affiliation:

1. Department of Pediatrics Hematology-Oncology, Children's Blood Foundation Laboratories, Weill Medical College of Cornell University, New York, NY;

2. Iron, Genes and the Immune System, Instituto de Biologia Molecular e Celular, Universidade do Porto, Porto, Portugal;

3. Department of Psychiatry, Weill Medical College of Cornell University, New York, NY;

4. Albert Einstein College of Medicine, Bronx, NY;

5. Department of Molecular Cell Biology, Vrije Universiteit Medical Center, Amsterdam, The Netherlands; and

6. Instituto de Ciências Biomédicas de Abel Salazar, Porto, Portugal

Abstract

Abstract In hereditary hemochromatosis, mutations in HFE lead to iron overload through abnormally low levels of hepcidin. In addition, HFE potentially modulates cellular iron uptake by interacting with transferrin receptor, a crucial protein during erythropoiesis. However, the role of HFE in this process was never explored. We hypothesize that HFE modulates erythropoiesis by affecting dietary iron absorption and erythroid iron intake. To investigate this, we used Hfe-KO mice in conditions of altered dietary iron and erythropoiesis. We show that Hfe-KO mice can overcome phlebotomy-induced anemia more rapidly than wild-type mice (even when iron loaded). Second, we evaluated mice combining the hemochromatosis and β-thalassemia phenotypes. Our results suggest that lack of Hfe is advantageous in conditions of increased erythropoietic activity because of augmented iron mobilization driven by deficient hepcidin response. Lastly, we demonstrate that Hfe is expressed in erythroid cells and impairs iron uptake, whereas its absence exclusively from the hematopoietic compartment is sufficient to accelerate recovery from phlebotomy. In summary, we demonstrate that Hfe influences erythropoiesis by 2 distinct mechanisms: limiting hepcidin expression under conditions of simultaneous iron overload and stress erythropoiesis, and impairing transferrin-bound iron uptake by erythroid cells. Moreover, our results provide novel suggestions to improve the treatment of hemochromatosis.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

Reference50 articles.

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