TGF-β inhibitors stimulate red blood cell production by enhancing self-renewal of BFU-E erythroid progenitors

Burst-forming unit erythroid progenitors (BFU-Es) are so named based on their ability to generate in methylcellulose culture large colonies of erythroid cells that consist of “bursts” of smaller erythroid colonies derived from the later colony-forming unit erythroid progenitor erythropoietin (Epo)–d...

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Veröffentlicht in:Blood 2016-12, Vol.128 (23), p.2637-2641
Hauptverfasser: Gao, Xiaofei, Lee, Hsiang-Ying, da Rocha, Edroaldo Lummertz, Zhang, Cheng, Lu, Yi-Fen, Li, Dandan, Feng, Yuxiong, Ezike, Jideofor, Elmes, Russell R., Barrasa, M. Inmaculada, Cahan, Patrick, Li, Hu, Daley, George Q., Lodish, Harvey F.
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Sprache:eng
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Zusammenfassung:Burst-forming unit erythroid progenitors (BFU-Es) are so named based on their ability to generate in methylcellulose culture large colonies of erythroid cells that consist of “bursts” of smaller erythroid colonies derived from the later colony-forming unit erythroid progenitor erythropoietin (Epo)–dependent progenitors. “Early” BFU-E cells forming large BFU-E colonies presumably have higher capacities for self-renewal than do “late” BFU-Es forming small colonies, but the mechanism underlying this heterogeneity remains unknown. We show that the type III transforming growth factor β (TGF-β) receptor (TβRIII) is a marker that distinguishes early and late BFU-Es. Transient elevation of TβRIII expression promotes TGF-β signaling during the early BFU-E to late BFU-E transition. Blocking TGF-β signaling using a receptor kinase inhibitor increases early BFU-E cell self-renewal and total erythroblast production, suggesting the usefulness of this type of drug in treating Epo-unresponsive anemias. •The type III TGF-β receptor is a marker that distinguishes “early” and “late” BFU-Es.•TGF-β inhibitors increase early BFU-E cell self-renewal and total erythroblast production.
ISSN:0006-4971
1528-0020
DOI:10.1182/blood-2016-05-718320