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Molecular mechanisms of FGF-2 inhibitory activity in the osteogenic context of mouse adipose-derived stem cells (mASCs).

机译:在小鼠脂肪干细胞(mASC)的成骨环境中FGF-2抑制活性的分子机制。

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Adipose-derived adult stem cells (ASCs), like their bone-marrow derived counterparts, possess the ability to differentiate down osteogenic, chondrogenic, adipogenic, and myogenic pathways. For bone differentiation of mouse ASCs (mASCs), retinoic-acid mediated upregulation of BMPR-IB has been found to be necessary. Interestingly, our previous work has also shown Fibroblast Growth Factor-2 (FGF-2) to strongly inhibit this osteogenic differentiation, even in the presence of retinoic acid. In this report, we investigated the molecular mechanisms underlying FGF-2 mediated osteogenic inhibition, demonstrating that addition of exogenous FGF-2 to mASCs antagonizes upregulation of BMPR-IB gene expression in response to retinoic acid. In addition, constitutive expression of BMPR-IB, but not BMPR-IA or BMPR-II, was found to counteract the inhibitory effects of FGF-2. Finally, p53(-/-) mASCs and human ASCs, both of which express high levels of endogenous BMPR-IB, underwent normal osteogenic differentiation even inthe presence of FGF-2. Collectively, our data therefore indicate that FGF-2 antagonizes the response of mASCs to retinoic acid and also suggest that threshold levels of BMPR-IB may play a crucial role both in counteracting the inhibitory role of FGF-2 and in promoting osteogenic differentiation of ASCs in the absence of retinoic acid. Moreover, the present study also indicates that differences exist between mouse and human ASCs in relationship to FGF-2 activity in the osteogenic context.
机译:脂肪来源的成体干细胞(ASC)就像它们的骨髓衍生细胞一样,具有区分成骨,成软骨,成脂和成肌途径的能力。对于小鼠ASC(mASC)的骨分化,已经发现视黄酸介导的BMPR-IB上调是必要的。有趣的是,我们先前的研究还显示,即使在存在视黄酸的情况下,成纤维细胞生长因子2(FGF-2)也能强烈抑制这种成骨细胞分化。在本报告中,我们研究了FGF-2介导的成骨抑制的分子机制,证明了向mASCs添加外源性FGF-2可以拮抗视黄酸对BMPR-IB基因表达的上调。另外,发现BMPR-1B的组成型表达,而不是BMPR-1A或BMPR-II,可以抵消FGF-2的抑制作用。最后,p53(-/-)mASC和人ASC均表达高水平的内源性BMPR-IB,即使在存在FGF-2的情况下也经历了正常的成骨分化。总体而言,我们的数据因此表明FGF-2拮抗mASC对视黄酸的反应,并且还表明BMPR-IB的阈值水平可能在抵消FGF-2的抑制作用和促进ASC的成骨分化中起关键作用在没有视黄酸的情况下此外,本研究还表明在成骨环境中,小鼠和人类ASC之间存在与FGF-2活性相关的差异。

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