首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Hey1 Basic Helix-Loop-Helix Protein Plays an Important Role in Mediating BMP9-induced Osteogenic Differentiation of Mesenchymal Progenitor Cells
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Hey1 Basic Helix-Loop-Helix Protein Plays an Important Role in Mediating BMP9-induced Osteogenic Differentiation of Mesenchymal Progenitor Cells

机译:Hey1基本螺旋-螺旋-螺旋蛋白在介导中起重要作用 BMP9诱导间充质祖细胞的成骨分化。 细胞

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摘要

Pluripotent mesenchymal stem cells (MSCs) are bone marrow stromal progenitor cells that can differentiate into osteogenic, chondrogenic, adipogenic, and myogenic lineages. We previously demonstrated that bone morphogenetic protein (BMP) 9 is one of the most potent and yet least characterized BMPs that are able to induce osteogenic differentiation of MSCs both in vitro and in vivo. Here, we conducted gene expression-profiling analysis and identified that Hey1 of the hairy/Enhancer of split-related repressor protein basic helix-loop-helix family was among the most significantly up-regulated early targets in BMP9-stimulated MSCs. We demonstrated that Hey1 expression was up-regulated at the immediate early stage of BMP9-induced osteogenic differentiation. Chromatin immunoprecipitation analysis indicated that Hey1 may be a direct target of the BMP9-induced Smad signaling pathway. Silencing Hey1 expression diminished BMP9-induced osteogenic differentiation both in vitro and in vivo and led to chondrogenic differentiation. Likewise, constitutive Hey1 expression augmented BMP9-mediated bone matrix mineralization. Hey1 and Runx2 were shown to act synergistically in BMP9-induced osteogenic differentiation, and Runx2 expression significantly decreased in the absence of Hey1, suggesting that Runx2 may function downstream of Hey1. Accordingly, the defective osteogenic differentiation caused by Hey1 knockdown was rescued by exogenous Runx2 expression. Thus, our findings suggest that Hey1, through its interplay with Runx2, may play an important role in regulating BMP9-induced osteoblast lineage differentiation of MSCs.
机译:多能间充质干细胞(MSC)是骨髓基质祖细胞,可以分化为成骨,成软骨,成脂和成肌谱系。我们先前证明,骨形态发生蛋白(BMP)9是最有力但最不特征的BMP之一,能够在体外和体内诱导MSC的成骨分化。在这里,我们进行了基因表达谱分析,并发现分裂相关的阻遏蛋白基本螺旋-环-螺旋家族的毛状细胞/增强子的Hey1是BMP9刺激的MSC中最显着上调的早期靶标之一。我们证明,在BMP9诱导的成骨分化的早期早期,Hey1表达被上调。染色质的免疫沉淀分析表明,Hey1可能是BMP9诱导的Smad信号通路的直接靶标。沉默Hey1表达可减少BMP9诱导的体内外成骨分化,并导致软骨分化。同样,组成型Hey1表达增强了BMP9介导的骨基质矿化作用。 Hey1和Runx2被证明在 BMP9诱导的成骨分化和Runx2表达显着 在没有Hey1的情况下降低,表明Runx2可能起作用 Hey1的下游。因此,成骨分化不良 Hey1敲低引起的外源性Runx2表达得以挽救。 因此,我们的发现表明,Hey1通过与Runx2的相互作用可能 在调节BMP9诱导的成骨细胞谱系中起重要作用 MSC的分化。

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