Department of Microbiology and Immunology, Tulane University Health Sciences Center, New Orleans, Louisiana, USA.
Stem Cells. 2011 Jul;29(7):1102-11. doi: 10.1002/stem.661.
Mesenchymal stem cells (MSCs) are known to differentiate into connective tissue lineages but intracellular signaling pathways that maintain cells in an undifferentiated state remain largely unexplored. Previously, we reported that fibroblast growth factor 2 (Fgf2) reversibly inhibited multilineage differentiation of primary mouse MSCs and now identify a unique compliment of signaling proteins that are dynamically regulated by this mitogen and whose expression levels are strongly correlated with inhibition of cell differentiation. Fgf2 selectively induced expression of Twist2 and Sprouty4 (Spry4) and repressed expression of soluble frizzled related receptor 2 (Sfrp2), runt-related transcription factor 2 (Runx2), and peroxisome proliferation activated receptor gamma (Pparg). In contrast, Wnt3a induced expression of Twist but not Twist2 or Spry4 and bone morphogenetic protein 2 (Bmp2) failed to alter expression of all three genes. Moreover, pretreatment of MSCs with Fgf2 delayed extracellular regulated kinase 1 (Erk1) and Erk2 phosphorylation and repressed bone-specific gene expression during an osteoinduction time course. Alternatively, pretreatment with Wnt3a had no effect, whereas Bmp2 pretreatment augmented Erk1/2 activation and bone-specific gene expression. Fgf2 also induced expression of Fgf receptor 1 (Fgfr1) and Fgfr4 and repressed Fgfr2 and Fgfr3 expression in MSCs, whereas Wnt3a and Bmp2 had the opposite effect. Finally, immunostaining revealed that Twist and Spry4 were coexpressed in MSCs and that Fgf2 treatment altered their subcellular distribution in a manner consistent with their mode of action. Collectively, these studies demonstrate that inhibition of mouse MSC differentiation by Fgf2 is strongly correlated with upregulation of Twist2 and Spry4 and suppression of Erk1/2 activation.
间充质干细胞(MSCs)已知能分化为结缔组织谱系,但维持细胞未分化状态的细胞内信号通路仍在很大程度上未被探索。先前,我们报道了成纤维细胞生长因子 2(Fgf2)可可逆地抑制原代小鼠 MSCs 的多谱系分化,现在我们确定了一组独特的信号蛋白,这些蛋白受这种有丝分裂原动态调节,其表达水平与细胞分化的抑制强烈相关。Fgf2 选择性地诱导 Twist2 和 Sprouty4(Spry4)的表达,并抑制可溶性卷曲相关受体 2(Sfrp2)、 runt 相关转录因子 2(Runx2)和过氧化物酶体增殖物激活受体 γ(Pparg)的表达。相比之下,Wnt3a 诱导 Twist 的表达,但不诱导 Twist2 或 Spry4 的表达,骨形态发生蛋白 2(Bmp2)未能改变这三个基因的表达。此外,Fgf2 预处理延迟了细胞外调节激酶 1(Erk1)和 Erk2 的磷酸化,并在成骨诱导时间过程中抑制了骨特异性基因的表达。相反,Wnt3a 的预处理没有影响,而 Bmp2 的预处理增强了 Erk1/2 的激活和骨特异性基因的表达。Fgf2 还诱导了 Fgf 受体 1(Fgfr1)和 Fgfr4 的表达,并抑制了 MSCs 中 Fgfr2 和 Fgfr3 的表达,而 Wnt3a 和 Bmp2 则有相反的作用。最后,免疫染色显示 Twist 和 Spry4 在 MSCs 中共同表达,并且 Fgf2 处理以与其作用模式一致的方式改变了它们的亚细胞分布。总的来说,这些研究表明,Fgf2 抑制小鼠 MSC 分化与 Twist2 和 Spry4 的上调以及 Erk1/2 激活的抑制密切相关。