Schiltz Corinne, Prouillet Christophe, Marty Caroline, Merciris Didier, Collet Corinne, de Vernejoul Marie-Christine, Geoffroy Valérie
INSERM U606, Hôpital Lariboisière, Paris, France.
J Cell Physiol. 2010 Jan;222(1):219-29. doi: 10.1002/jcp.21941.
The Runx2 gene is essential for osteoblast differentiation and function. In vivo over-expression of Runx2 in osteoblasts increases bone resorption, and blocks terminal osteoblast differentiation. Several lines of evidence suggest that osteoblastic matrix metalloproteinases (MMPs) could contribute to the increased bone resorption observed in mice over-expressing Runx2 (Runx2 mice). The goal of our study was to use a transgenic approach to find out whether the inhibition of osteoblastic MMPs can reduce the bone loss induced by the over-expression of Runx2. We analyzed the effect of the in vivo over-expression of the TIMP-1 in osteoblasts on the severe osteopenic phenotype in Runx2 mice. Females with the different genotypes (WT, Runx2, TIMP-1 and TIMP-1/Runx2) were analyzed for bone density, architecture, osteoblastic and osteoclastic activity and gene expression using qPCR. TIMP-1 over-expression reduces the bone loss in adult Runx2 mice. The prevention of the bone loss in TIMP-1/Runx2 mice was due to a combination of reduced bone resorption and sustained bone formation. We present evidence that the ability of osteoblastic cells to induce osteoclastic differentiation is lower in TIMP-1/Runx2 mice than in Runx2 mice, probably due to a reduction in the expression of RANK-L and of the Runx2 transgene. Osteoblast primary cells from TIMP-1/Runx2 mice, but not from Runx2 mice, were able to differentiate into fully mature osteoblasts producing high osteocalcin levels. In conclusion, our findings suggest that osteoblastic MMPs can affect osteoblast differentiation. Our work also indicates that osteoblastic MMPs are partly responsible for the bone loss observed in Runx2 transgenic mice.
Runx2基因对于成骨细胞的分化和功能至关重要。在成骨细胞中Runx2的体内过表达会增加骨吸收,并阻断成骨细胞的终末分化。多项证据表明,成骨细胞基质金属蛋白酶(MMPs)可能导致在过表达Runx2的小鼠(Runx2小鼠)中观察到的骨吸收增加。我们研究的目的是采用转基因方法来确定抑制成骨细胞MMPs是否能够减少由Runx2过表达诱导的骨质流失。我们分析了成骨细胞中TIMP-1的体内过表达对Runx2小鼠严重骨质疏松表型的影响。使用qPCR分析了具有不同基因型(野生型、Runx2、TIMP-1和TIMP-1/Runx2)的雌性小鼠的骨密度、结构、成骨细胞和破骨细胞活性以及基因表达。TIMP-1过表达减少了成年Runx2小鼠的骨质流失。TIMP-1/Runx2小鼠骨质流失的预防是由于骨吸收减少和持续骨形成的共同作用。我们提供的证据表明,TIMP-1/Runx2小鼠中成骨细胞诱导破骨细胞分化的能力低于Runx2小鼠,这可能是由于RANK-L和Runx2转基因表达的降低。来自TIMP-1/Runx2小鼠而非Runx2小鼠的成骨细胞原代细胞能够分化为产生高骨钙素水平的完全成熟的成骨细胞。总之,我们的研究结果表明成骨细胞MMPs可以影响成骨细胞分化。我们的工作还表明,成骨细胞MMPs部分导致了Runx2转基因小鼠中观察到的骨质流失。