FOXO1 regulates pentose phosphate pathway-mediated induction of developmental erythropoiesis.

Front Cell Dev Biol

Molecular Medicine and Gene Therapy, Lund Stem Cell Center, Lund University, Lund, Sweden.

Published: October 2022

AI Article Synopsis

  • The pentose phosphate pathway (PPP) is crucial for erythroid differentiation from hemogenic endothelium (HE) cells, which are derived from human induced pluripotent stem cells (hiPSCs).
  • Inhibiting FOXO1, a negative regulator, enhances the PPP's non-oxidative branch, supporting nucleotide biosynthesis and cell proliferation during erythropoiesis.
  • NRF2 and AKT are essential for this process, while FOXO1's role varies depending on the cell origin, as it doesn't affect differentiation in cord-blood hematopoietic stem and progenitor cells (HSPCs).

Article Abstract

Primitive, neonatal and adult erythroid cells have been previously shown to have an active pentose phosphate pathway (PPP) that fuels various processes. However, it is unclear whether the PPP plays a role during the emergence of erythroid progenitors from hemogenic endothelium (HE). In this study, we explored PPP and its genetic regulation in developmental erythropoiesis. We induced hematopoietic differentiation of human induced pluripotent stem cells (hiPSCs) to obtain HE cells. These cells were treated with lentiviral vectors harboring shRNAs against FOXO1, or with inhibitors against the PPP, NRF2 or AKT. Erythroid differentiation, proliferation and frequency were evaluated by flow cytometry. Gene expression was assessed by qPCR or by analysis of available RNAseq data. We found that PPP is indispensable for the erythroid differentiation of HE cells and it partially fuels nucleotide biosynthesis. Moreover, we showed that NRF2 and AKT are essential, while FOXO1 is detrimental, for HE-derived erythroid differentiation. In contrast, blocking FOXO1 expression did not affect erythroid differentiation of cord-blood HSPCs. Mechanistically, FOXO1 inhibition in HE cells led to an increase in the non-oxidative branch of the PPP. During developmental erythropoiesis, the gradual decrease in FOXO1 activates the PPP and fuels nucleotide biosynthesis and cell proliferation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9596918PMC
http://dx.doi.org/10.3389/fcell.2022.1039636DOI Listing

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