## Abstract 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 dif
Homeodomain transcription factors regulate BMP-2-induced osteoactivin transcription in osteoblasts
โ Scribed by Maneet Singh; Fabiola E. Del Carpio-Cano; M. Alexandra Monroy; Steven N. Popoff; Fayez F. Safadi
- Publisher
- John Wiley and Sons
- Year
- 2011
- Tongue
- English
- Weight
- 672 KB
- Volume
- 227
- Category
- Article
- ISSN
- 0021-9541
No coin nor oath required. For personal study only.
โฆ Synopsis
Abstract
Osteoactivin (OA) is required for the differentiation of osteoblast cells. OA expression is stimulated by bone morphogenetic proteinโ2 (BMPโ2). BMPโ2 recruits homeodomain transcription factors Dlx3, Dlx5, and Msx2 to selectively activate or repress transcription of osteogenic genes and hence tightly regulate their transcription during osteoblast differentiation. Considering the key roles of Dlx3, Dlx5, and Msx2 in osteoblast differentiation, here we hypothesize that homeodomain proteins regulate BMPโ2โinduced OA transcription during osteoblast differentiation. Four classical homeodomain binding sites were identified in the proximal 0.96โkb region of rat OA promoter. Deletions and mutagenesis studies of the OA promoter region indicated that all four homeodomain binding sites are crucial for BMPโ2โinduced OA promoter activity. Simultaneous disruption of homeodomain binding sites at โ852 and โ843 of the transcription start site of OA gene significantly decreased the BMPโ2โinduced OA transcription and inhibited binding of Dlx3, Dlx5, and Msx2 proteins to the OA promoter. Dlx3 and Dlx5 proteins were found to activate the OA transcription, whereas, Msx2 suppressed BMPโ2โinduced OA transcription. Using chromatin immunoprecipitation assays, we demonstrated that the OA promoter is predominantly occupied by Dlx3 and Dlx5 during the proliferation and matrix maturation stages of osteoblast differentiation, respectively. During the matrix mineralization stage, BMPโ2 robustly enhanced the recruitment of Dlx5 and to a lesser extent of Dlx3 and Msx2 to the OA promoter region. Collectively, our results show that the BMPโ2โinduced OA transcription is differentially regulated by Dlx3, Dlx5, and Msx2 during osteoblast differentiation. J. Cell. Physiol. 227: 390โ399, 2012. ยฉ 2011 Wiley Periodicals, Inc.
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