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The Hepcidin Regulator Erythroferrone is a New Member of the Erythropoiesis–Iron–Bone Circuitry

Authors :
Vaughn Ostland
Mone Zaidi
Veena Sangkhae
Elizabeta Nemeth
Tony Yuen
Maria Feola
Melanie Castro-Mollo
Marc Ruiz Martinez
Sakshi Gera
Robert E. Fleming
Anisa Gumerova
Carla Casu
Stefano Rivella
Marina Planoutene
Yelena Ginzburg
Huiling Han
Se-Min Kim
Cara Clementelli
Daria Lizneva
Publication Year :
2021
Publisher :
Cold Spring Harbor Laboratory, 2021.

Abstract

Erythroblast erythroferrone (ERFE) secretion inhibits hepcidin expression by sequestering several bone morphogenetic protein (BMP) family members to increase iron availability for erythropoiesis. We report that ERFE expression in osteoblasts is higher compared with erythroblasts, is independent of erythropoietin, and functional in suppressing hepatocyte hepcidin expression. Erfe-/- mice display low–bone–mass arising from increased bone resorption despite a concomitant increase in bone formation. Consistently, Erfe-/- osteoblasts exhibit enhanced mineralization, Sost and Rankl expression, and BMP–mediated signaling ex vivo. The ERFE effect on osteoclasts is mediated through increased osteoblastic RANKL and sclerostin expression, increasing osteoclastogenesis in Erfe-/- mice. Importantly, Erfe loss in β–thalassemic (Hbbth3/+) mice, a disease model with increased ERFE expression, triggers profound osteoclastic bone resorption and bone loss. Together, ERFE exerts an osteoprotective effect by modulating BMP signaling in osteoblasts, decreasing RANKL production to limit osteoclastogenesis, and prevents excessive bone loss during expanded erythropoiesis in β–thalassemia.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........0ada268b25caf1070f2f0ead039d06fa