Byers Benjamin A, Pavlath Grace K, Murphy T J, Karsenty Gerard, García Andrés J
Woodruff School of Mechanical Engineering, Georgia Institute of Technology, Atlanta, USA.
J Bone Miner Res. 2002 Nov;17(11):1931-44. doi: 10.1359/jbmr.2002.17.11.1931.
Functional expression of the transcriptional activator Runx2/Cbfal is essential for osteoblastic differentiation and bone formation and maintenance. Forced expression of Runx2 in nonosteoblastic cells induces expression of osteoblast-specific genes, but the effects of Runx2 overexpression on in vitro matrix mineralization have not been determined. To examine whether exogenous Runx2 expression is sufficient to direct in vitro mineralization, we investigated sustained expression of Runx2 in nonosteoblastic and osteoblast-like cell lines using retroviral gene delivery. As expected, forced expression of Runx2 induced several osteoblast-specific genes in NIH3T3 and C3H10T1/2 fibroblasts and up-regulated expression in MC3T3-E1 immature osteoblast-like cells. However, Runx2 expression enhanced matrix mineralization in a cell-type-dependent manner. NIH3T3 and IMR-90 fibroblasts overexpressing Runx2 did not produce a mineralized matrix, indicating that forced expression of Runx2 in these nonosteogenic cell lines is not sufficient to direct in vitro mineralization. Consistent with the pluripotent nature of the cell line, a fraction (25%) of Runx2-expressing C3H10T1/2 fibroblast cultures produced mineralized nodules in a viral supernatant-dependent manner. Notably, bone sialoprotein (BSP) gene expression was detected at significantly higher levels in mineralizing Runx2-infected C3H10T1/2 cells compared with Runx2-expressing cultures which did not mineralize. Treatment of Runx2-infected C3H10T1/2 cultures with dexamethasone enhanced osteoblastic phenotype expression, inducing low levels of mineralization independent of viral supernatant. Finally, Runx2 overexpression in immature osteoblast-like MC3T3-E1 cells resulted in acceleration and robust up-regulation of matrix mineralization compared with controls. These results suggest that, although functional Runx2 is essential to multiple osteoblast-specific activities, in vitro matrix mineralization requires additional tissue-specific cofactors, which supplement Runx2 activity.
转录激活因子Runx2/Cbfal的功能性表达对于成骨细胞分化以及骨的形成和维持至关重要。在非成骨细胞中强制表达Runx2可诱导成骨细胞特异性基因的表达,但Runx2过表达对体外基质矿化的影响尚未确定。为了研究外源性Runx2表达是否足以指导体外矿化,我们使用逆转录病毒基因传递技术,研究了Runx2在非成骨细胞和成骨细胞样细胞系中的持续表达情况。正如预期的那样,在NIH3T3和C3H10T1/2成纤维细胞中强制表达Runx2可诱导多个成骨细胞特异性基因,并上调MC3T3-E1未成熟成骨细胞样细胞中的表达。然而,Runx2的表达以细胞类型依赖的方式增强了基质矿化。过表达Runx2的NIH3T3和IMR-90成纤维细胞未产生矿化基质,这表明在这些非成骨细胞系中强制表达Runx2不足以指导体外矿化。与该细胞系的多能性质一致,一部分(25%)表达Runx2的C3H10T1/2成纤维细胞培养物以病毒上清液依赖的方式产生了矿化结节。值得注意的是,与未矿化的Runx2表达培养物相比,在矿化的Runx2感染的C3H10T1/2细胞中检测到骨唾液酸蛋白(BSP)基因表达水平显著更高。用地塞米松处理Runx2感染的C3H10T1/2培养物可增强成骨细胞表型表达,诱导低水平的矿化,且与病毒上清液无关。最后,与对照相比,在未成熟成骨细胞样MC3T3-E1细胞中过表达Runx2导致基质矿化加速并显著上调。这些结果表明,尽管功能性Runx2对多种成骨细胞特异性活动至关重要,但体外基质矿化需要额外的组织特异性辅因子来补充Runx2的活性。