Dipartimento di Biochimica e Biologia Molecolare, Sezione di Biologia Molecolare, Università degli Studi di Ferrara, Ferrara, Italy.
J Cell Mol Med. 2012 Apr;16(4):740-51. doi: 10.1111/j.1582-4934.2011.01352.x.
The pathways that control mesenchymal stem cells (MSCs) differentiation are not well understood, and although some of the involved transcription factors (TFs) have been characterized, the role of others remains unclear. We used human MSCs from tibial plateau (TP) trabecular bone, iliac crest (IC) bone marrow and Wharton's jelly (WJ) umbilical cord demonstrating a variability in their mineral matrix deposition, and in the expression levels of TFs including Runx2, Sox9, Sox5, Sox6, STAT1 and Slug, all involved in the control of osteochondroprogenitors differentiation program. Because we reasoned that the basal expression level of some TFs with crucial role in the control of MSC fate may be correlated with osteogenic potential, we considered the possibility to affect the hMSCs behaviour by using gene silencing approach without exposing cells to induction media. In this study we found that Slug-silenced cells changed in morphology, decreased in their migration ability, increased Sox9 and Sox5 and decreased Sox6 and STAT1 expression. On the contrary, the effect of Slug depletion on Runx2 was influenced by cell type. Interestingly, we demonstrated a direct in vivo regulatory action of Slug by chromatin immunoprecipitation, showing a specific recruitment of this TF in the promoter of Runx2 and Sox9 genes. As a whole, our findings have important potential implication on bone tissue engineering applications, reinforcing the concept that manipulation of specific TF expression levels may elucidate MSC biology and the molecular mechanisms, which promote osteogenic differentiation.
控制间充质干细胞 (MSCs) 分化的途径尚未完全阐明,尽管已经鉴定出一些涉及的转录因子 (TFs),但其他 TF 的作用仍不清楚。我们使用来自胫骨平台 (TP) 松质骨、髂嵴 (IC) 骨髓和 Wharton 胶 (WJ) 脐带的人 MSCs,它们在矿物质基质沉积和 TF 表达水平方面表现出多样性,包括 Runx2、Sox9、Sox5、Sox6、STAT1 和 Slug,这些 TF 都参与了骨软骨祖细胞分化程序的调控。因为我们推断,一些在控制 MSC 命运中具有关键作用的 TF 的基础表达水平可能与成骨潜能相关,所以我们考虑使用基因沉默方法来影响 hMSCs 的行为,而无需将细胞暴露于诱导培养基中。在这项研究中,我们发现 Slug 沉默的细胞在形态上发生变化,迁移能力降低,Sox9 和 Sox5 表达增加,而 Sox6 和 STAT1 表达降低。相反,Slug 耗竭对 Runx2 的影响受到细胞类型的影响。有趣的是,我们通过染色质免疫沉淀证明了 Slug 的直接体内调节作用,表明该 TF 特异性募集到 Runx2 和 Sox9 基因的启动子中。总的来说,我们的研究结果对骨组织工程应用具有重要的潜在意义,强化了这样一种概念,即操纵特定 TF 的表达水平可能阐明 MSC 生物学和促进成骨分化的分子机制。