| Literature DB >> 24953180 |
Leal Oburoglu1, Saverio Tardito2, Vanessa Fritz1, Stéphanie C de Barros1, Peggy Merida1, Marco Craveiro1, João Mamede1, Gaspard Cretenet1, Cédric Mongellaz1, Xiuli An3, Dorota Klysz1, Jawida Touhami1, Myriam Boyer-Clavel4, Jean-Luc Battini1, Valérie Dardalhon1, Valérie S Zimmermann1, Narla Mohandas5, Eyal Gottlieb2, Marc Sitbon1, Sandrina Kinet6, Naomi Taylor7.
Abstract
The metabolic state of quiescent hematopoietic stem cells (HSCs) is an important regulator of self-renewal, but it is unclear whether or how metabolic parameters contribute to HSC lineage specification and commitment. Here, we show that the commitment of human and murine HSCs to the erythroid lineage is dependent upon glutamine metabolism. HSCs require the ASCT2 glutamine transporter and active glutamine metabolism for erythroid specification. Blocking this pathway diverts EPO-stimulated HSCs to differentiate into myelomonocytic fates, altering in vivo HSC responses and erythroid commitment under stress conditions such as hemolytic anemia. Mechanistically, erythroid specification of HSCs requires glutamine-dependent de novo nucleotide biosynthesis. Exogenous nucleosides rescue erythroid commitment of human HSCs under conditions of limited glutamine catabolism, and glucose-stimulated nucleotide biosynthesis further enhances erythroid specification. Thus, the availability of glutamine and glucose to provide fuel for nucleotide biosynthesis regulates HSC lineage commitment under conditions of metabolic stress.Entities:
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Year: 2014 PMID: 24953180 DOI: 10.1016/j.stem.2014.06.002
Source DB: PubMed Journal: Cell Stem Cell ISSN: 1875-9777 Impact factor: 24.633