Department for Molecular Medicine and Gene Therapy, Lund Strategic Center for Stem Cell Biology, Lund University, Sweden.
Cell Stem Cell. 2011 Oct 4;9(4):330-44. doi: 10.1016/j.stem.2011.07.016.
Hematopoietic stem cells (HSCs) are maintained in hypoxic niches in endosteal regions of bones. Here we demonstrate that Cripto and its receptor GRP78 are important regulators of HSCs in the niche. Flow cytometry analyses revealed two distinct subpopulations of CD34(-)KSL cells based on the expression of GRP78, and these populations showed different reconstitution potential in transplantation assays. GRP78(+)HSCs mainly reside in the endosteal area, are more hypoxic, and exhibit a lower mitochondrial potential, and their HSC capacity was maintained in vitro by Cripto through induction of higher glycolytic activity. Additionally, HIF-1α KO mice have decreased numbers of GRP78(+)HSCs and reduced expression of Cripto in the endosteal niche. Furthermore, blocking GRP78 induced a movement of HSCs from the endosteal to the central marrow area. These data suggest that Cripto/GRP78 signaling is an important pathway that regulates HSC quiescence and maintains HSCs in hypoxia as an intermediary of HIF-1α.
造血干细胞(HSCs)存在于骨骼骨内膜区域的低氧龛中。本文中,我们证明了 Cripto 及其受体 GRP78 是龛内 HSCs 的重要调节因子。流式细胞术分析显示,根据 GRP78 的表达,CD34(-)KSL 细胞存在两个不同的亚群,这些群体在移植实验中显示出不同的重建潜力。GRP78(+)HSCs 主要位于骨内膜区域,更缺氧,线粒体电位更低,其 HSC 能力在体外通过 Cripto 诱导更高的糖酵解活性得以维持。此外,HIF-1α KO 小鼠的 GRP78(+)HSCs 数量减少,骨内膜龛中 Cripto 的表达降低。此外,阻断 GRP78 会诱导 HSCs 从骨内膜向中央骨髓区迁移。这些数据表明,Cripto/GRP78 信号通路是调节 HSC 静止和维持 HSCs 低氧状态的重要途径,是 HIF-1α 的中介。