Baksh Dolores, Boland Genevieve M, Tuan Rocky S
Department and Health and Human Services, Cartilage Biology and Orthopaedics Branch, National Institute of Arthritis, and Musculoskeletal and Skin Diseases, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Cell Biochem. 2007 Aug 1;101(5):1109-24. doi: 10.1002/jcb.21097.
Wnt signaling is involved in developmental processes and in adult stem cell homeostasis. This study analyzes the role(s) of key Wnt signaling mediators in the maintenance and osteogenesis of mesenchymal stem cells (MSCs). We focus specifically on the involvement of low-density lipoprotein-related protein 5 (LRP5), T-cell factor 1 (TCF1), and Frizzled (Fz) receptors, in the presence or absence of exogenous, prototypical canonical (Wnt3a), and non-canonical (Wnt5a) Wnts. In undifferentiated MSCs, LRP5 and TCF1 mediate canonical Wnt signal transduction, leading to increased proliferation, enhanced synergistically by Wnt3a. However, LRP5 overexpression inhibits osteogenic differentiation, further suppressed by Wnt3a. Wnt5a does not affect cell proliferation but enhances osteogenesis of MSCs. Interestingly, Wnt5a inhibits Wnt3a effects on MSCs, while Wnt3a suppresses Wnt5a-mediated enhancement of osteogenesis. Flow cytometry revealed that LRP5 expression elicits differential changes in Fz receptor profiles in undifferentiated versus osteogenic MSCs. Taken together, these results suggest that Wnt signaling crosstalk and functional antagonism with the LRP5 co-receptor are key signaling regulators of MSC maintenance and differentiation.
Wnt信号通路参与发育过程以及成体干细胞的稳态维持。本研究分析了关键Wnt信号转导介质在间充质干细胞(MSC)维持和成骨过程中的作用。我们特别关注低密度脂蛋白相关蛋白5(LRP5)、T细胞因子1(TCF1)和卷曲蛋白(Fz)受体在有无外源性典型的经典型(Wnt3a)和非经典型(Wnt5a)Wnt情况下的作用。在未分化的MSC中,LRP5和TCF1介导经典Wnt信号转导,导致增殖增加,并被Wnt3a协同增强。然而,LRP5过表达抑制成骨分化,并被Wnt3a进一步抑制。Wnt5a不影响细胞增殖,但增强MSC的成骨作用。有趣的是,Wnt5a抑制Wnt3a对MSC的作用,而Wnt3a抑制Wnt5a介导的成骨增强作用。流式细胞术显示,LRP5表达在未分化与成骨的MSC中引发Fz受体谱的差异变化。综上所述,这些结果表明Wnt信号通路的相互作用以及与LRP5共受体的功能拮抗是MSC维持和分化的关键信号调节因子。