Cassady A I, Luchin A, Ostrowski M C, Hume D A
Institute for Molecular Biosciences and School of Molecular and Microbial Sciences, The University of Queensland, Brisbane, Queensland, Australia.
J Bone Miner Res. 2003 Oct;18(10):1901-4. doi: 10.1359/jbmr.2003.18.10.1901.
The activity of the TRACP promoter has been investigated as a model of gene regulation in osteoclasts. The murine TRACP gene promoter contains potential binding sites for a number of transcription factors in particular, candidate sites for the Ets factor PU.1 and for the microphthalmia transcription factor (MiTF). These are of relevance to osteoclast biology because the PU.1 knockout mouse has an osteopetrotic phenotype, and MiTF, when mutated in the mi/mi mouse, also results in osteopetrosis. The binding sites for both of these factors have been identified, and they have been determined to be functional in regulating TRACP expression. A novel assay system using the highly osteoclastogenic RAW/C4 subclone of the murine macrophage cell line RAW264.7 was used to perform gene expression experiments on macrophage and osteoclast cell backgrounds. We have shown that TRACP expression is a target for regulation by the macrophage/osteoclast transcription factor PU.1 and the osteoclast commitment factor MiTF and that these factors act synergistically in regulating this promoter. This directly links two controlling factors of osteoclast differentiation to the expression of an effector of cell function.
作为破骨细胞基因调控的一个模型,已对酒石酸磷酸酶(TRACP)启动子的活性展开了研究。小鼠TRACP基因启动子包含多个转录因子的潜在结合位点,尤其是Ets因子PU.1和小眼转录因子(MiTF)的候选结合位点。这些与破骨细胞生物学相关,因为PU.1基因敲除小鼠具有石骨症表型,而MiTF在小眼畸形(mi/mi)小鼠中发生突变时,也会导致石骨症。已鉴定出这两种因子的结合位点,并确定它们在调节TRACP表达方面具有功能。利用小鼠巨噬细胞系RAW264.7的高破骨细胞生成性RAW/C4亚克隆构建了一种新型检测系统,用于在巨噬细胞和破骨细胞背景下进行基因表达实验。我们已表明,TRACP表达是巨噬细胞/破骨细胞转录因子PU.1和破骨细胞定向分化因子MiTF的调控靶点,并且这些因子在调节该启动子时具有协同作用。这直接将破骨细胞分化的两个控制因子与细胞功能效应器的表达联系了起来。