A Cross-Talk Between Stromal Cell-Derived Factor-1 and Transforming Growth Factor-β Controls the Quiescence/Cycling Switch of CD34+ Progenitors Through FoxO3 and Mammalian Target of Rapamycin

被引:44
作者
Chabanon, Aurelie [1 ]
Desterke, Christophe [1 ]
Rodenburger, Emilie [1 ]
Clay, Denis [2 ]
Guerton, Bernadette [1 ]
Boutin, Laetitia [3 ]
Bennaceur-Griscelli, Annelise [4 ]
Pierre-Louis, Olivier [1 ]
Uzan, Georges [1 ]
Abecassis, Lucile [5 ]
Bourgeade, Marie-Francoise [5 ]
Lataillade, Jean-Jacques [3 ]
Le Bousse-Kerdiles, Marie-Caroline [1 ]
机构
[1] INSERM, U602, F-94807 Villejuif, France
[2] Univ Paris Sud, Inst Andre Lwoff, IFR89, Villejuif, France
[3] Hop Percy, Ctr Transfus Sanguine Armees, Clamart, France
[4] INSERM, U790, Villejuif, France
[5] INSERM, U542, Villejuif, France
关键词
SDF-1; TGF-beta; FoxO3a; mTOR; CD34(+) progenitors; Cell cycle;
D O I
10.1634/stemcells.2008-0219
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Cell cycle regulation plays a fundamental role in stem cell biology. A balance between quiescence and proliferation of hematopoietic stem cells in interaction with the microenvironment is critical for sustaining long-term hematopoiesis and for protection against stress. We analyzed the molecular mechanisms by which stromal cell-derived factor-1 (SDF-1) exhibited a cell cycle-promoting effect and interacted with transforming growth factor-beta (TGF-beta),which has negative effects on cell cycle orchestration of human hematopoietic CD34(+) progenitor cells. We demonstrated that a low concentration of SDF-1 modulated the expression of key cell cycle regulators such as cyclins, cyclin-dependent kinase inhibitors, and TGF-beta target genes, confirming its cell cycle-promoting effect. We showed that a cross-talk between SDF-1- and TGF-beta-related signaling pathways involving phosphatidylinositol 3-kinase (PI3K)/Akt phosphorylation participated in the control of CD34(+) cell cycling. We demonstrated a pivotal role of two downstream effectors of the PI3K/Akt pathway, FoxO3a and mammalian target of rapamycin, as connectors in the SDF-1-/TGF-beta-induced control of the cycling/quiescence switch and proposed a model integrating a dialogue between the two molecules in cell cycle progression. Our data shed new light on the signaling pathways involved in SDF-1 cell cycle-promoting activity and suggest that the balance between SDF-1- and TGF-beta-activated pathways is critical for the regulation of hematopoietic progenitor cell cycle status. STEM CELLS 2008; 26: 3150-3161
引用
收藏
页码:3150 / 3161
页数:12
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