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Erythropoietin Regulation of Red Blood Cell Production: from Bench to Bedside and Back

Overview
Journal F1000Res
Date 2020 Sep 28
PMID 32983414
Citations 33
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Abstract

More than 50 years of efforts to identify the major cytokine responsible for red blood cell (RBC) production (erythropoiesis) led to the identification of erythropoietin (EPO) in 1977 and its receptor (EPOR) in 1989, followed by three decades of rich scientific discovery. We now know that an elaborate oxygen-sensing mechanism regulates the production of EPO, which in turn promotes the maturation and survival of erythroid progenitors. Engagement of the EPOR by EPO activates three interconnected signaling pathways that drive RBC production via diverse downstream effectors and simultaneously trigger negative feedback loops to suppress signaling activity. Together, the finely tuned mechanisms that drive endogenous EPO production and facilitate its downstream activities have evolved to maintain RBC levels in a narrow physiological range and to respond rapidly to erythropoietic stresses such as hypoxia or blood loss. Examination of these pathways has elucidated the genetics of numerous inherited and acquired disorders associated with deficient or excessive RBC production and generated valuable drugs to treat anemia, including recombinant human EPO and more recently the prolyl hydroxylase inhibitors, which act partly by stimulating endogenous EPO synthesis. Ongoing structure-function studies of the EPOR and its essential partner, tyrosine kinase JAK2, suggest that it may be possible to generate new "designer" drugs that control selected subsets of cytokine receptor activities for therapeutic manipulation of hematopoiesis and treatment of blood cancers.

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References
1.
Li J, Hale J, Bhagia P, Xue F, Chen L, Jaffray J . Isolation and transcriptome analyses of human erythroid progenitors: BFU-E and CFU-E. Blood. 2014; 124(24):3636-45. PMC: 4256913. DOI: 10.1182/blood-2014-07-588806. View

2.
Fisher J, Koury S, Ducey T, Mendel S . Erythropoietin production by interstitial cells of hypoxic monkey kidneys. Br J Haematol. 1996; 95(1):27-32. DOI: 10.1046/j.1365-2141.1996.d01-1864.x. View

3.
Kautz L, Jung G, Valore E, Rivella S, Nemeth E, Ganz T . Identification of erythroferrone as an erythroid regulator of iron metabolism. Nat Genet. 2014; 46(7):678-84. PMC: 4104984. DOI: 10.1038/ng.2996. View

4.
Wu H, Klingmuller U, Acurio A, Hsiao J, Lodish H . Functional interaction of erythropoietin and stem cell factor receptors is essential for erythroid colony formation. Proc Natl Acad Sci U S A. 1997; 94(5):1806-10. PMC: 19998. DOI: 10.1073/pnas.94.5.1806. View

5.
Cui Y, Riedlinger G, Miyoshi K, Tang W, Li C, Deng C . Inactivation of Stat5 in mouse mammary epithelium during pregnancy reveals distinct functions in cell proliferation, survival, and differentiation. Mol Cell Biol. 2004; 24(18):8037-47. PMC: 515028. DOI: 10.1128/MCB.24.18.8037-8047.2004. View