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The transcription factor osterix (SP7) regulates BMP6‐induced human osteoblast differentiation

机译:转录因子osterix(sp7)调节Bmp6诱导的人成骨细胞分化

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摘要

The transcription factor Osterix (Sp7) is essential for osteoblastogenesis and bone formation in mice. Genome wide association studies have demonstrated that Osterix is associated with bone mineral density in humans; however, the molecular significance of Osterix in human osteoblast differentiation is poorly described. In this study we have characterized the role of Osterix in human mesenchymal progenitor cell (hMSC) differentiation. We first analyzed temporal microarray data of primary hMSC treated with bone morphogenetic protein‐6 (BMP6) using clustering to identify genes that are associated with Osterix expression. Osterix clusters with a set of osteoblast‐associated extracellular matrix (ECM) genes, including bone sialoprotein (BSP) and a novel set of proteoglycans, osteomodulin (OMD), osteoglycin, and asporin. Maximum expression of these genes is dependent upon both the concentration and duration of BMP6 exposure. Next we overexpressed and repressed Osterix in primary hMSC using retrovirus. The enforced expression of Osterix had relatively minor effects on osteoblastic gene expression independent of exogenous BMP6. However, in the presence of BMP6, Osterix overexpression enhanced expression of the aforementioned ECM genes. Additionally, Osterix overexpression enhanced BMP6 induced osteoblast mineralization, while inhibiting hMSC proliferation. Conversely, Osterix knockdown maintained hMSC in an immature state by decreasing expression of these ECM genes and decreasing mineralization and hMSC proliferation. Overexpression of the Osterix regulated gene OMD with retrovirus promoted mineralization of hMSC. These results suggest that Osterix is necessary, but not sufficient for hMSC osteoblast differentiation. Osterix regulates the expression of a set of ECM proteins which are involved in terminal osteoblast differentiation. J. Cell. Physiol. 227: 2677–2685, 2012. © 2011 Wiley Periodicals, Inc.
机译:转录因子Osterix(Sp7)对于小鼠成骨细胞生成和骨骼形成至关重要。全基因组关联研究表明,Osterix与人类的骨矿物质密度有关。然而,Osterix在人类成骨细胞分化中的分子意义却很少被描述。在这项研究中,我们表征了Osterix在人间充质祖细胞(hMSC)分化中的作用。我们首先使用聚类分析来分析与骨形态发生蛋白-6(BMP6)处理的原代hMSC的时间微阵列数据,以鉴定与Osterix表达相关的基因。 Osterix聚集了一组与成骨细胞相关的细胞外基质(ECM)基因,包括骨唾液蛋白(BSP)和一组新的蛋白聚糖,骨调节蛋白(OMD),骨蛋白和天冬氨酸。这些基因的最大表达取决于BMP6暴露的浓度和持续时间。接下来,我们使用逆转录病毒在原代hMSC中过表达并抑制了Osterix。 Osterix的强制表达对成骨细胞基因表达的影响相对较小,独立于外源BMP6。但是,在存在BMP6的情况下,Osterix过表达会增强上述ECM基因的表达。此外,Osterix过表达增强了BMP6诱导的成骨细胞矿化,同时抑制了hMSC的增殖。相反,通过减少这些ECM基因的表达并减少矿化作用和hMSC增殖,Osterix敲低使hMSC处于未成熟状态。用逆转录病毒过表达Osterix调控的基因OMD可以促进hMSC的矿化。这些结果表明,Osterix对于hMSC成骨细胞的分化是必要的,但还不够。 Osterix调节一组与终末成骨细胞分化有关的ECM蛋白的表达。 J.细胞。生理。 227:2677–2685,2012。©2011 Wiley Periodicals,Inc.

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