Fleming Heather E, Janzen Viktor, Lo Celso Cristina, Guo Jun, Leahy Kathleen M, Kronenberg Henry M, Scadden David T
Center for Regenerative Medicine, Massachusetts General Hospital, Boston, MA 02114, USA.
Cell Stem Cell. 2008 Mar 6;2(3):274-83. doi: 10.1016/j.stem.2008.01.003.
Wingless (Wnt) is a potent morphogen demonstrated in multiple cell lineages to promote the expansion and maintenance of stem and progenitor cell populations. Wnt effects are highly context dependent, and varying effects of Wnt signaling on hematopoietic stem cells (HSCs) have been reported. We explored the impact of Wnt signaling in vivo, specifically in the context of the HSC niche by using an osteoblast-specific promoter driving expression of the paninhibitor of canonical Wnt signaling, Dickkopf1 (Dkk1). Here we report that Wnt signaling was markedly inhibited in HSCs and, unexpectedly given prior reports, reduction in HSC Wnt signaling resulted in reduced p21Cip1 expression, increased cell cycling, and a progressive decline in regenerative function after transplantation. This effect was microenvironment determined, but irreversible if the cells were transferred to a normal host. Wnt pathway activation in the niche is required to limit HSC proliferation and preserve the reconstituting function of endogenous hematopoietic stem cells.
无翅型(Wnt)是一种有效的形态发生素,在多个细胞谱系中均有显示,可促进干细胞和祖细胞群体的扩增与维持。Wnt的作用高度依赖于背景环境,并且已有报道称Wnt信号传导对造血干细胞(HSC)具有不同的影响。我们通过使用驱动经典Wnt信号传导的泛抑制剂Dickkopf1(Dkk1)表达的成骨细胞特异性启动子,探索了Wnt信号传导在体内的影响,特别是在HSC微环境的背景下。在此我们报告,HSC中的Wnt信号传导受到显著抑制,并且与先前的报道不同,HSC中Wnt信号传导的减少导致p21Cip1表达降低、细胞周期增加以及移植后再生功能逐渐下降。这种效应由微环境决定,但如果将细胞转移到正常宿主中则不可逆转。微环境中的Wnt通路激活对于限制HSC增殖和维持内源性造血干细胞的重建功能是必需的。