首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Osteoblast-specific Transcription Factor Osterix (Osx) Is an Upstream Regulator of Satb2 during Bone Formation
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Osteoblast-specific Transcription Factor Osterix (Osx) Is an Upstream Regulator of Satb2 during Bone Formation

机译:成骨细胞特异性转录因子Osterix(Osx)是骨形成过程中Satb2的上游调节剂。

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摘要

Osterix (Osx) is an osteoblast-specific transcription factor essential for osteoblast differentiation and bone formation. Osx knock-out mice lack bone completely. Satb2 is critical for osteoblast differentiation as a special AT-rich binding transcription factor. It is not known how Satb2 is transcriptionally regulated during bone formation. In this study, quantitative real-time RT-PCR results demonstrated that Satb2 was down-regulated in Osx-null calvaria. In stable C2C12 mesenchymal cells using the tetracycline (Tet)-Off system, overexpression of Osx stimulated Satb2 expression. Moreover, inhibition of Osx by siRNA led to repression of Satb2 expression in osteoblasts. These results suggest that Osx controls Satb2 expression. Transient transfection assay showed that Osx activated 1kb Satb2 promoter reporter activity in a dose-dependent manner. To define the region of Satb2 promoter responsive to Osx activation, a series of deletion mutants of Satb2 constructs were made, and the minimal region was narrowed down to the proximal 130 bp of the Satb2 promoter. Further point mutation studies found that two GC-rich region mutations disrupted the Satb2 130bp promoter activation by Osx, suggesting that these GC-rich binding sites were responsible for Satb2 activation by Osx. Gel shift assay showed that Osx bound to the Satb2 promoter sequence directly. ChIP assays indicated that endogenous Osx associated with the native Satb2 promoter in osteoblasts. Importantly, Satb2 siRNA significantly inhibited Osx-induced osteoblast marker gene expressions. Taken together, our findings indicate that Osx is an upstream regulator of Satb2 during bone formation. This reveals a new additional link of the transcriptional regulation mechanism that Osx controls bone formation.
机译:Osterix(Osx)是成骨细胞特异性转录因子,对成骨细胞分化和骨形成至关重要。 Osx剔除小鼠完全缺乏骨骼。 Satb2作为一种特殊的富含AT的结合转录因子,对于成骨细胞的分化至关重要。尚不清楚在骨形成过程中Satb2是如何转录调控的。在这项研究中,实时定量RT-PCR结果表明Satb2在Osx-null颅盖膜中被下调。在使用四环素(Tet)-Off系统的稳定C2C12间充质细胞中,Osx的过表达刺激了Satb2的表达。而且,siRNA对Osx的抑制导致成骨细胞中Satb2表达的抑制。这些结果表明,Osx控制Satb2表达。瞬时转染实验表明,Osx以剂量依赖的方式激活了1kb Satb2启动子报告子活性。为了定义响应于Osx激活的Satb2启动子区域,制备了一系列Satb2构建体的缺失突变体,并将最小区域缩小到Satb2启动子的近130bp。进一步的点突变研究发现,两个富含GC的区域突变破坏了Osx对Satb2 130bp启动子的激活,表明这些富含GC的结合位点负责Osx对Satb2的激活。凝胶位移分析表明,Osx直接与Satb2启动子序列结合。 ChIP分析表明,内源性Osx与成骨细胞中的天然Satb2启动子有关。重要的是,Satb2 siRNA显着抑制了Osx诱导的成骨细胞标记基因的表达。综上所述,我们的发现表明Osx是骨骼形成过程中Satb2的上游调节剂。这揭示了Osx控制骨骼形成的转录调控机制的新的附加链接。

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