AKT induces erythroid-cell maturation of JAK2-deficient fetal liver progenitor cells and is required for Epo regulation of erythroid-cell differentiation

S Ghaffari, C Kitidis, W Zhao, D Marinkovic… - Blood, 2006 - ashpublications.org
S Ghaffari, C Kitidis, W Zhao, D Marinkovic, MD Fleming, B Luo, J Marszalek, HF Lodish
Blood, 2006ashpublications.org
AKT serine threonine kinase of the protein kinase B (PKB) family plays essential roles in cell
survival, growth, metabolism, and differentiation. In the erythroid system, AKT is known to be
rapidly phosphorylated and activated in response to erythropoietin (Epo) engagement of
Epo receptor (EpoR) and to sustain survival signals in cultured erythroid cells. Here we
demonstrate that activated AKT complements EpoR signaling and supports erythroid-cell
differentiation in wild-type and JAK2-deficient fetal liver cells. We show that erythroid …
AKT serine threonine kinase of the protein kinase B (PKB) family plays essential roles in cell survival, growth, metabolism, and differentiation. In the erythroid system, AKT is known to be rapidly phosphorylated and activated in response to erythropoietin (Epo) engagement of Epo receptor (EpoR) and to sustain survival signals in cultured erythroid cells. Here we demonstrate that activated AKT complements EpoR signaling and supports erythroid-cell differentiation in wild-type and JAK2-deficient fetal liver cells. We show that erythroid maturation of AKT-transduced cells is not solely dependent on AKT-induced cell survival or proliferation signals, suggesting that AKT transduces also a differentiation-specific signal downstream of EpoR in erythroid cells. Down-regulation of expression of AKT kinase by RNA interference, or AKT activity by expression of dominant negative forms, inhibits significantly fetal liver–derived erythroid-cell colony formation and gene expression, demonstrating that AKT is required for Epo regulation of erythroid-cell maturation.
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