Riggi Nicolò, Suvà Mario-Luca, Suvà Domizio, Cironi Luisa, Provero Paolo, Tercier Stéphane, Joseph Jean-Marc, Stehle Jean-Christophe, Baumer Karine, Kindler Vincent, Stamenkovic Ivan
Division of Experimental Pathology, Institute of Pathology, University of Lausanne, Switzerland.
Cancer Res. 2008 Apr 1;68(7):2176-85. doi: 10.1158/0008-5472.CAN-07-1761.
Ewing's sarcoma family tumors (ESFT) express the EWS-FLI-1 fusion gene generated by the chromosomal translocation t(11;22)(q24;q12). Expression of the EWS-FLI-1 fusion protein in a permissive cellular environment is believed to play a key role in ESFT pathogenesis. However, EWS-FLI-1 induces growth arrest or apoptosis in differentiated primary cells, and the identity of permissive primary human cells that can support its expression and function has until now remained elusive. Here we show that expression of EWS-FLI-1 in human mesenchymal stem cells (hMSC) is not only stably maintained without inhibiting proliferation but also induces a gene expression profile bearing striking similarity to that of ESFT, including genes that are among the highest ESFT discriminators. Expression of EWS-FLI-1 in hMSCs may recapitulate the initial steps of Ewing's sarcoma development, allowing identification of genes that play an important role early in its pathogenesis. Among relevant candidate transcripts induced by EWS-FLI-1 in hMSCs, we found the polycomb group gene EZH2, which we show to play a critical role in Ewing's sarcoma growth. These observations are consistent with our recent findings using mouse mesenchymal progenitor cells and provide compelling evidence that hMSCs are candidate cells of origin of ESFT.
尤因肉瘤家族性肿瘤(ESFT)表达由染色体易位t(11;22)(q24;q12)产生的EWS-FLI-1融合基因。EWS-FLI-1融合蛋白在适宜的细胞环境中的表达被认为在ESFT发病机制中起关键作用。然而,EWS-FLI-1在分化的原代细胞中诱导生长停滞或凋亡,而能够支持其表达和功能的适宜原代人类细胞的身份至今仍不清楚。在此我们表明,EWS-FLI-1在人间充质干细胞(hMSC)中的表达不仅能稳定维持且不抑制增殖,还能诱导出与ESFT具有显著相似性的基因表达谱,包括那些在ESFT鉴别中最为突出的基因。EWS-FLI-1在hMSCs中的表达可能概括了尤因肉瘤发展的初始步骤,从而能够鉴定出在其发病机制早期起重要作用的基因。在EWS-FLI-1在hMSCs中诱导产生的相关候选转录本中,我们发现了多梳蛋白家族基因EZH2,我们证明它在尤因肉瘤生长中起关键作用。这些观察结果与我们最近使用小鼠间充质祖细胞的研究结果一致,并提供了令人信服的证据,表明hMSCs是ESFT的候选起源细胞。