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小眼畸形转录因子和PU.1协同诱导白细胞受体破骨细胞相关受体基因表达。

Microphthalmia transcription factor and PU.1 synergistically induce the leukocyte receptor osteoclast-associated receptor gene expression.

作者信息

So Hongseob, Rho Jaerang, Jeong Daewon, Park Raekil, Fisher David E, Ostrowski Michael C, Choi Yongwon, Kim Nacksung

机构信息

Department of Pathology and Laboratory Medicine, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Biol Chem. 2003 Jun 27;278(26):24209-16. doi: 10.1074/jbc.M302940200. Epub 2003 Apr 13.

Abstract

We have recently reported the identification of a novel member of the leukocyte receptor family, osteoclast-associated receptor (OSCAR), which has two Ig-like domains and functions as a bone-specific regulator of osteoclast differentiation. Here, we have cloned the OSCAR promoter region to examine its regulation by transcription factors. The 1.7-kb promoter region of the mouse OSCAR gene contains two potential E-box elements for microphthalmia transcription factor (MITF) and three putative PU.1 sites. MITF or PU.1 alone activates the OSCAR reporter construct 5-6-fold, and the combination of MITF and PU.1 synergistically activates the OSCAR reporter activity up to 110-fold. The mRNA expression patterns of MITF, PU.1, and OSCAR in TRANCE-treated (RAW 264.7) or TRANCE/M-CSF-treated cells (primary osteoclasts) reveal that MITF mRNA expression is induced at a much earlier time point than OSCAR gene expression. In contrast to MITF, PU.1 mRNA levels remain relatively constant at all time points, suggesting that TRANCE-induced MITF, not PU.1 expression, is one of the critical regulatory mechanisms for optimal OSCAR expression during osteoclastogenesis. In addition, we have shown that the combination of MITF and constitutively active MKK6-expressing plasmids synergistically activates OSCAR reporter activity. Taken together, our results strongly suggest that PU.1 and MITF transcription factors synergistically activate OSCAR gene expression. Moreover, the activation of OSCAR gene expression by PU.1/MITF is further enhanced by the TRANCE-induced MKK6/p38 signaling cascade.

摘要

我们最近报道了白细胞受体家族一个新成员——破骨细胞相关受体(OSCAR)的鉴定,它有两个免疫球蛋白样结构域,作为破骨细胞分化的骨特异性调节因子发挥作用。在此,我们克隆了OSCAR启动子区域以研究其转录因子调控机制。小鼠OSCAR基因1.7 kb的启动子区域包含两个小眼畸形转录因子(MITF)潜在的E盒元件和三个假定的PU.1位点。单独的MITF或PU.1可使OSCAR报告基因构建体激活5 - 6倍,而MITF与PU.1共同作用可协同激活OSCAR报告基因活性达110倍。在经TRANCE处理的(RAW 264.7)或经TRANCE/M - CSF处理的细胞(原代破骨细胞)中,MITF、PU.1和OSCAR的mRNA表达模式显示,MITF mRNA表达比OSCAR基因表达在更早的时间点被诱导。与MITF相反,PU.1 mRNA水平在所有时间点都保持相对恒定,这表明TRANCE诱导的MITF而非PU.1表达,是破骨细胞生成过程中OSCAR最佳表达的关键调控机制之一。此外,我们还表明,MITF与组成型活性MKK6表达质粒共同作用可协同激活OSCAR报告基因活性。综上所述,我们的结果强烈表明PU.1和MITF转录因子协同激活OSCAR基因表达。此外,PU.1/MITF对OSCAR基因表达的激活作用在TRANCE诱导的MKK6/p38信号级联反应中进一步增强。

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