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Generation of a mouse model with expression of bone morphogenetic protein type II receptor lacking the cytoplasmic domain in osteoblasts

机译:用表达骨形成蛋白II型受体的表达产生小鼠模型,缺乏成骨细胞中的细胞质结构域

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Different working modes were proposed to explain how bone morphogenetic protein (BMP) type I and II receptors are involved in Smad phosphorylation cascades. In addition, both parathyroid hormone (PTH) and Wnts are also known to regulate phosphorylation of Smads. Here we established a mouse model in which a C-terminal truncated BMP type II receptor (BMPRII) is expressed specifically in osteoblasts as a dominant negative form in the BMP/Smad signaling pathway. Smad1/5/8 phosphorylation levels were reduced in bone marrow stromal cells from the transgenic mice. The sizes of embryos were smaller, and the mineralization of calvarial bones and lumbar vertebrae were delayed in mice expressing the transgene. In adult transgenic mice, total bone volume was reduced with no significant changes observed in cortical bone. Thus, osteoblast-targeted expression of dominant negative BMPRII leads to inhibited Smad1 phosphorylation, delayed skeletal development, and decreased bone formation in the adult mice. This study provides an in vivo tool to study the role of BMPRII in BMP/Smad signaling and the regulation of this pathway by PTH and Wnts.
机译:提出了不同的工作模式来解释骨形态发生蛋白(BMP)I和II型受体如何参与Smad磷酸化级联。此外,还已知甲状旁腺激素(PTH)和Wnts调节Smads的磷酸化。在这里,我们建立了一种小鼠模型,其中C末端截短的BMP II型受体(BMPRII)在BMP / Smad信号传导途径中特别地在成骨细胞中表达为显性阴性形式。从转基因小鼠中骨髓基质细胞中磷酸化水平降低了Smad1 / 5/8磷酸化水平。胚胎的尺寸较小,并且在表达转基因的小鼠中延迟了颅骨骨和腰椎的矿化。在成人转基因小鼠中,在皮质骨中没有观察到的总骨体积没有显着变化。因此,成骨细胞靶向显性阴性BMPRII的表达导致抑制SMAD1磷酸化,延迟骨骼发育,并且在成年小鼠中减少骨形成。本研究提供了体内工具,用于研究BMPRII在BMP / SMAD信号传导中的作用以及PTH和WNT的该途径的调节。

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