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FAM210B is an erythropoietin target and regulates erythroid heme synthesis by controlling mitochondrial iron import and ferrochelatase activity
- Source :
- Yien, YY; Shi, J; Chen, C; Cheung, JT; Grillo, AS; Shrestha, R; et al.(2018). FAM210B is an erythropoietin target and regulates erythroid heme synthesis by controlling mitochondrial iron import and ferrochelatase activity.. The Journal of biological chemistry. doi: 10.1074/jbc.ra118.002742. UCLA: Retrieved from: http://www.escholarship.org/uc/item/0qr1j5bw, The Journal of biological chemistry, vol 293, iss 51
- Publication Year :
- 2018
- Publisher :
- Elsevier BV, 2018.
-
Abstract
- Erythropoietin (EPO) signaling is critical to many processes essential to terminal erythropoiesis. Despite the centrality of iron metabolism to erythropoiesis, the mechanisms by which EPO regulates iron status are not well-understood. To this end, here we profiled gene expression in EPO-treated 32D pro-B cells and developing fetal liver erythroid cells to identify additional iron regulatory genes. We determined that FAM210B, a mitochondrial inner-membrane protein, is essential for hemoglobinization, proliferation, and enucleation during terminal erythroid maturation. Fam210b deficiency led to defects in mitochondrial iron uptake, heme synthesis, and iron-sulfur cluster formation. These defects were corrected with a lipid-soluble, small-molecule iron transporter, hinokitiol, in Fam210b-deficient murine erythroid cells and zebrafish morphants. Genetic complementation experiments revealed that FAM210B is not a mitochondrial iron transporter but is required for adequate mitochondrial iron import to sustain heme synthesis and iron-sulfur cluster formation during erythroid differentiation. FAM210B was also required for maximal ferrochelatase activity in differentiating erythroid cells. We propose that FAM210B functions as an adaptor protein that facilitates the formation of an oligomeric mitochondrial iron transport complex, required for the increase in iron acquisition for heme synthesis during terminal erythropoiesis. Collectively, our results reveal a critical mechanism by which EPO signaling regulates terminal erythropoiesis and iron metabolism.
- Subjects :
- 0301 basic medicine
Biochemistry & Molecular Biology
Iron
red blood cell
Heme
Medical and Health Sciences
Biochemistry
Mitochondrial Proteins
Mice
03 medical and health sciences
chemistry.chemical_compound
cell metabolism
Erythroid Cells
hemic and lymphatic diseases
Gene expression
medicine
Animals
Humans
iron metabolism
Erythropoiesis
Erythropoietin
Molecular Biology
Zebrafish
Regulator gene
biology
Chemistry
Membrane Proteins
Signal transducing adaptor protein
Cell Biology
Biological Sciences
biology.organism_classification
Mitochondria
Cell biology
Protein Transport
Red blood cell
Metabolism
HEK293 Cells
030104 developmental biology
medicine.anatomical_structure
Chemical Sciences
Mitochondrial Membranes
erythrocyte
Ferrochelatase
medicine.drug
Subjects
Details
- ISSN :
- 00219258
- Volume :
- 293
- Database :
- OpenAIRE
- Journal :
- Journal of Biological Chemistry
- Accession number :
- edsair.doi.dedup.....47c21734e94239d050af7db12effddcf