首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Exported 18-kDa Isoform of Fibroblast Growth Factor-2 Is a Critical Determinant of Bone Mass in Mice
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Exported 18-kDa Isoform of Fibroblast Growth Factor-2 Is a Critical Determinant of Bone Mass in Mice

机译:出口的成纤维细胞生长因子2的18 kDa亚型至关重要 骨量的决定因素 老鼠

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摘要

The role of the 18-kDa isoform of fibroblast growth factor-2 (FGF2) in the maintenance of bone mass was examined in Col3.6-18-kDa FGF2-IRES-GFPsaph transgenic (18-kDa TgFGF2) mice in which a 3.6-kb fragment of the type I collagen 5′-regulatory region (Col3.6) drives the expression of only the 18-kDa isoform of FGF2 with green fluorescent protein-sapphire (GFPsaph). Vector only transgenic mice (Col3.6-IRES-GFPsaph, VTg) were also developed as a control, and mice specifically deficient in 18-kDa FGF2 (FGF2lmw-/-) were also examined. Bone mineral density, femoral bone volume, trabecular thickness, and cortical bone area and thickness were significantly increased in 18-kDa TgFGF2 mice compared with VTg. Bone marrow cultures (BMSC) from 18-kDa TgFGF2 mice produced more mineralized nodules than VTg. Increased bone formation was associated with reduced expression of the Wnt antagonist secreted frizzled receptor 1 (sFRP-1). In contrast to 18-kDa TgFGF2 mice, FGF2lmw-/- mice have significantly reduced bone mineral density and fewer mineralized nodules, coincident with increased expression of sFRP-1 in bones and BMSC. Moreover, silencing of sFRP-1 in BMSC from FGF2lmw-/- mice reversed the decrease in β-catenin and Runx2 mRNA. Assay of Wnt/β-catenin-mediated transcription showed increased and decreased TCF-luciferase activity in BMSC from 18-kDa TgFGF2 and FGF2lmw-/- mice, respectively. Collectively, these results demonstrate that the 18-kDa FGF2 isoform is a critical determinant of bone mass in mice by modulation of the Wnt signaling pathway.
机译:在Col3.6-18-kDa FGF2-IRES-GFPsaph转基因(18-kDa TgFGF2)小鼠中检查了成纤维细胞生长因子2(FGF2)的18-kDa亚型在维持骨量中的作用,其中3.6 I型胶原5'调控区(Col3.6)的-kb片段仅驱动带有绿色荧光蛋白蓝宝石(GFPsaph)的FGF2的18-kDa亚型表达。还开发了仅载体转基因小鼠(Col3.6-IRES-GFPsaph,VTg)作为对照,并且小鼠特异性缺乏18-kDa FGF2(FGF2 lmw -/-)也进行了检查。与VTg相比,18 kDa TgFGF2小鼠的骨矿物质密度,股骨体积,小梁厚度以及皮质骨面积和厚度显着增加。来自18 kDa TgFGF2小鼠的骨髓培养物(BMSC)比VTg产生更多的矿化结节。骨形成增加与Wnt拮抗剂分泌的卷曲受体1(sFRP-1)表达降低有关。与18-kDa TgFGF2小鼠相比,FGF2 lmw -/-小鼠的骨矿物质密度显着降低,而矿化的结节更少,这与骨骼中sFRP-1表达的增加相吻合和BMSC。而且,沉默 FGF2 lmw -/-小鼠的BMSC中的sFRP-1 逆转了β-catenin和Runx2 mRNA的下降。测定 Wnt /β-catenin介导的转录显示增加和减少 18-kDa TgFGF2和BMSC中TCF的荧光素酶活性 FGF2 lmw -/-小鼠。 总体而言,这些结果表明18-kDa FGF2同工型是 Wnt信号传导调节小鼠骨量的关键决定因素 途径。

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