Angiocrine factors from Akt-activated endothelial cells balance self-renewal and differentiation of haematopoietic stem cells
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- 24 October 2010
- journal article
- research article
- Published by Springer Nature in Nature Cell Biology
- Vol. 12 (11), 1046-1056
- https://doi.org/10.1038/ncb2108
Abstract
Endothelial cells form a vascular niche that supports haematopoietic stem cell function. Akt activation in endothelial cells upregulates angiocrine factors to promote long-term haematopoietic stem cell repopulation capacity while co-activation of Akt and MAPK shift the balance towards maintenance and differentiation of their progenitors. Endothelial cells establish an instructive vascular niche that reconstitutes haematopoietic stem and progenitor cells (HSPCs) through release of specific paracrine growth factors, known as angiocrine factors. However, the mechanism by which endothelial cells balance the rate of proliferation and lineage-specific differentiation of HSPCs is unknown. Here, we demonstrate that Akt activation in endothelial cells, through recruitment of mTOR, but not the FoxO pathway, upregulates specific angiocrine factors that support expansion of CD34−Flt3− KLS HSPCs with long-term haematopoietic stem cell (LT-HSC) repopulation capacity. Conversely, co-activation of Akt-stimulated endothelial cells with p42/44 MAPK shifts the balance towards maintenance and differentiation of the HSPCs. Selective activation of Akt1 in the endothelial cells of adult mice increased the number of colony forming units in the spleen and CD34−Flt3− KLS HSPCs with LT-HSC activity in the bone marrow, accelerating haematopoietic recovery. Therefore, the activation state of endothelial cells modulates reconstitution of HSPCs through the modulation of angiocrine factors, with Akt–mTOR-activated endothelial cells supporting the self-renewal of LT-HSCs and expansion of HSPCs, whereas MAPK co-activation favours maintenance and lineage-specific differentiation of HSPCs.Keywords
This publication has 43 references indexed in Scilit:
- Inductive angiocrine signals from sinusoidal endothelium are required for liver regenerationNature, 2010
- Endothelial Cells Are Essential for the Self-Renewal and Repopulation of Notch-Dependent Hematopoietic Stem CellsCell Stem Cell, 2010
- Instructive role of the vascular niche in promoting tumour growth and tissue repair by angiocrine factorsNature Reviews Cancer, 2010
- Engraftment and Reconstitution of Hematopoiesis Is Dependent on VEGFR2-Mediated Regeneration of Sinusoidal Endothelial CellsCell Stem Cell, 2009
- Generation of a functional and durable vascular niche by the adenoviral E4ORF1 geneProceedings of the National Academy of Sciences, 2008
- Tumor necrosis factor-α and endothelial cells modulate Notch signaling in the bone marrow microenvironment during inflammationExperimental Hematology, 2008
- Wnt Signaling in the Niche Enforces Hematopoietic Stem Cell Quiescence and Is Necessary to Preserve Self-Renewal In VivoCell Stem Cell, 2008
- Wnt5a inhibits canonical Wnt signaling in hematopoietic stem cells and enhances repopulationProceedings of the National Academy of Sciences, 2007
- Pathological angiogenesis is induced by sustained Akt signaling and inhibited by rapamycinCancer Cell, 2006
- The stem-cell niche as an entity of actionNature, 2006