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首页> 外文期刊>The Journal of biological chemistry >Notch Signaling Pathway Enhances Bone Morphogenetic Protein 2 (BMP2) Responsiveness of Msx2 Gene to Induce Osteogenic Differentiation and Mineralization of Vascular Smooth Muscle Cells
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Notch Signaling Pathway Enhances Bone Morphogenetic Protein 2 (BMP2) Responsiveness of Msx2 Gene to Induce Osteogenic Differentiation and Mineralization of Vascular Smooth Muscle Cells

机译:Notch信号通路增强MSX2基因的骨形态发生蛋白2(BMP2)反应性,诱导血管平滑肌细胞的成骨分化和矿化

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Vascular calcification is regulated in a process similar to bone formation. BMP2 (bone morphogenetic protein 2) is essential for osteoblastic differentiation of mesenchymal progenitor cells and thus has been implicated in the development of vascular calcification. Here we examined whether Notch signaling interacts with BMP2 signaling to regulate osteogenic differentiation and mineralization of vascular smooth muscle cells (SMCs). BMP2 alone scarcely induced the expression of alkaline phosphatase (ALP), an ectoenzyme crucially required for active biomineralization, in human aortic SMCs (HASMCs), despite its strong induction in osteoblast precursor MC3T3-E1 cells. Notably, overexpression of the Notch1 intracellular domain (N1-ICD) markedly enhanced BMP2-mediated induction of ALP activity and mineralization of HASMCs. In HASMCs, expression of Msx2 gene, a well documented BMP2 target gene in osteoblasts, was barely induced by BMP2 alone, and N1-ICD clearly enhanced the BMP2-driven Msx2 gene expression. Deletion and site-directed mutation analysis of Msx2 gene promoter revealed that the RBPJk-binding site was necessary for BMP2 responsiveness. Using the RBPJk-deficient cells and siRNA for RBPJk, we showed that RBPJk was required for BMP2 induction of Msx2 gene expression and ALP activity. Moreover, we showed that Smad1, a transcription factor downstream of BMP2 signaling, interacted with N1-ICD to form a complex within the Msx2 promoter. Immunohistochemistry of human calcifying atherosclerotic plaques revealed colocalized expression of Notch1, BMP2, and Msx2. These results indicate that the Notch intracellular domain·RBPJk complex enhances the BMP2-induced Msx2 gene expression by cooperating with Smad1 and suggest that Notch signaling makes vascular SMC responsive to BMP2 and promotes vascular calcification.
机译:血管钙化在类似于骨形成的过程中受到调节。 BMP2(骨形态发生蛋白2)对于间充质祖细胞的骨细胞分化至关重要,因此涉及血管钙化的发展。在这里,我们检查了Notch信号传导是否与BMP2信号传递相互作用以调节血管平滑肌细胞(SMC)的骨质发生分化和矿化。尽管其在成骨细胞前体MC3T3-E1细胞中强加诱导,但单独单独诱导碱性磷酸酶(ALP)的表达,在人的主动脉SMCS(HASMC)中,在人主动脉中的SMCS(Hasmcs)中。值得注意的是,Notch1细胞内域(N1-ICD)的过表达明显增强了BMP2介导的ALP活性和HASMC的矿化。在HASMCs中,MSX2基因的表达,在成骨细胞中的一种记录的BMP2靶基因,单独的BMP2几乎不能诱导,N1-ICD明显增强了BMP2驱动的MSX2基因表达。 MSX2基因启动子的缺失和定向突变分析显示,BMP2反应性需要RBPJK结合位点。使用RBPJK缺陷的细胞和siRNA用于RBPJK,我们表明BMP2诱导MSX2基因表达和ALP活性所需的RBPJK。此外,我们表明Smad1,BMP2信号传导下游的转录因子,与N1-ICD相互作用,形成MSX2启动子内的复合物。人类钙的免疫组化斑块斑块斑块显示出Notch1,BMP2和MSX2的分层化表达。这些结果表明,凹口细胞内结构域·RBPJK络合物通过与Smad1配合而增强了BMP2诱导的MSX2基因表达,并表明缺口信号传导使血管SMC响应于BMP2并促进血管钙化。

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