Ghosh-Choudhury Nandini, Singha Prajjal K, Woodruff Kathleen, St Clair Patricia, Bsoul Sameer, Werner Sherry L, Choudhury Goutam Ghosh
Department of Pathology, University of Texas Health Science Center, San Antonio, TX 78229, USA.
J Biol Chem. 2006 Jul 21;281(29):20160-70. doi: 10.1074/jbc.M511071200. Epub 2006 May 17.
Bone remodeling depends upon proper osteoblast and osteoclast function. Bone morphogenetic protein-2 (BMP-2) stimulates differentiation of osteoblasts from pluripotent precursors. Osteoclast formation depends on the concerted action of osteoblast-derived receptor activator of NF-kappaB ligand and colony-stimulating factor-1 (CSF-1). BMP-2 stimulates receptor activator of NF-kappaB ligand expression. However, the effect of BMP-2 on CSF-1 expression has not been studied. We investigated the role of BMP-2 in CSF-1 expression in osteogenic C2C12 cells. Incubation of C2C12 cells with BMP-2 supported osteoclastogenesis of spleen cells with a concomitant increase in expression of CSF-1 mRNA and protein. To determine the mechanism, we identified a BMP-responsive element between -627 bp and -509 bp in the CSF-1 promoter. DNase I footprint analysis revealed the presence of consensus Smad binding motif in this region. Electrophoretic mobility shift assay showed BMP-2-stimulated binding of proteins to this motif. Mutation of core sequence as well as its 5'- and 3'-flanking sequences abolished the DNA-protein interaction resulting in inhibition of CSF-1 transcription. Supershift analysis detects the presence of Smads 1, 5, and 4 and the transcriptional coactivator CREB-binding protein in the BMP-responsive element-protein complex. In addition, Smads 1 and 5 alone or in combination with Smad 4 increased CSF-1 transcription. Furthermore, CREB-binding protein markedly increased transcription of CSF-1. These data represent the first evidence that BMP-2 increases the osteoclastogenic CSF-1 expression by a transcriptional mechanism using the canonical Smad pathway and provide a mechanism for BMP-2-induced osteoclast differentiation.
骨重塑依赖于成骨细胞和破骨细胞的正常功能。骨形态发生蛋白-2(BMP-2)刺激多能前体细胞向成骨细胞分化。破骨细胞的形成取决于成骨细胞衍生的核因子κB受体激活剂配体和集落刺激因子-1(CSF-1)的协同作用。BMP-2刺激核因子κB受体激活剂配体的表达。然而,BMP-2对CSF-1表达的影响尚未得到研究。我们研究了BMP-2在成骨C2C12细胞中CSF-1表达中的作用。用BMP-2孵育C2C12细胞可支持脾细胞的破骨细胞生成,同时CSF-1 mRNA和蛋白的表达增加。为了确定其机制,我们在CSF-1启动子中-627 bp至-509 bp之间鉴定出一个BMP反应元件。DNA酶I足迹分析显示该区域存在共有Smad结合基序。电泳迁移率变动分析表明BMP-2刺激蛋白质与该基序结合。核心序列及其5'和3'侧翼序列的突变消除了DNA-蛋白质相互作用,导致CSF-1转录受到抑制。超迁移分析检测到BMP反应元件-蛋白质复合物中存在Smads 1、5和4以及转录共激活因子CREB结合蛋白。此外,单独的Smads 1和5或与Smad 4组合可增加CSF-1转录。此外,CREB结合蛋白显著增加CSF-1的转录。这些数据首次证明BMP-2通过使用经典Smad途径的转录机制增加破骨细胞生成性CSF-1的表达,并为BMP-2诱导的破骨细胞分化提供了一种机制。