Cooperation between both Wnt/β-catenin and PTEN/PI3K/Akt signaling promotes primitive hematopoietic stem cell self-renewal and expansion
- 2 September 2011
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 25 (18), 1928-1942
- https://doi.org/10.1101/gad.17421911
Abstract
Although self-renewal is the central property of stem cells, the underlying mechanism remains inadequately defined. Using a hematopoietic stem and progenitor cell (HSPC)-specific conditional induction line, we generated a compound genetic model bearing both Pten deletion and β-catenin activation. These double mutant mice exhibit a novel phenotype, including expansion of phenotypic long-term hematopoietic stem cells (LT-HSCs) without extensive differentiation. Unexpectedly, constitutive activation of β-catenin alone results in apoptosis of HSCs. However, together, the Wnt/β-catenin and PTEN/PI3k/Akt pathways interact to drive phenotypic LT-HSC expansion by inducing proliferation while simultaneously inhibiting apoptosis and blocking differentiation, demonstrating the necessity of complementary cooperation between the two pathways in promoting self-renewal. Mechanistically, β-catenin activation reduces multiple differentiation-inducing transcription factors, blocking differentiation partially through up-regulation of Inhibitor of differentiation 2 (Id2). In double mutants, loss of Pten enhances the HSC anti-apoptotic factor Mcl-1. All of these contribute in a complementary way to HSC self-renewal and expansion. While permanent, genetic alteration of both pathways in double mutant mice leads to expansion of phenotypic HSCs, these HSCs cannot function due to blocked differentiation. We developed a pharmacological approach to expand normal, functional HSCs in culture using factors that reversibly activate both Wnt/β-catenin and PI3K/Akt signaling simultaneously. We show for the first time that activation of either single pathway is insufficient to expand primitive HSCs, but in combination, both pathways drive self-renewal and expansion of HSCs with long-term functional capacity.Keywords
This publication has 71 references indexed in Scilit:
- Expansion of Human Cord Blood Hematopoietic Stem Cells for TransplantationCell Stem Cell, 2010
- Endothelial Cells Are Essential for the Self-Renewal and Repopulation of Notch-Dependent Hematopoietic Stem CellsCell Stem Cell, 2010
- Genetic Interaction of PGE2 and Wnt Signaling Regulates Developmental Specification of Stem Cells and RegenerationCell, 2009
- Wnt-Related Molecules and Signaling Pathway Equilibrium in HematopoiesisCell Stem Cell, 2009
- Tenets of PTEN Tumor SuppressionCell, 2008
- Wnt Signaling in the Niche Enforces Hematopoietic Stem Cell Quiescence and Is Necessary to Preserve Self-Renewal In VivoCell Stem Cell, 2008
- Hematopoiesis: An Evolving Paradigm for Stem Cell BiologyCell, 2008
- Loss of β-Catenin Impairs the Renewal of Normal and CML Stem Cells In VivoCancer Cell, 2007
- Prostaglandin E2 regulates vertebrate haematopoietic stem cell homeostasisNature, 2007
- The stem-cell niche as an entity of actionNature, 2006