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首页> 外文期刊>Experimental & molecular medicine. >Modulation of cartilage differentiation by melanoma inhibiting activity/cartilage-derived retinoic acid-sensitive protein (MIA/CD-RAP)
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Modulation of cartilage differentiation by melanoma inhibiting activity/cartilage-derived retinoic acid-sensitive protein (MIA/CD-RAP)

机译:黑色素瘤抑制活性/软骨衍生的维甲酸敏感蛋白(MIA / CD-RAP)对软骨分化的调节

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Melanoma inhibiting activity/cartilage-derived retinoic acid-sensitive protein (MIA/CD-RAP) is a small soluble protein secreted from malignant melanoma cells and from chondrocytes. Recently, we revealed that MIA/CD-RAP can modulate bone morphogenetic protein (BMP)2-induced osteogenic differentiation into a chondrogenic direction. In the current study we aimed to find the molecular details of this MIA/CD-RAP function. Direct influence of MIA on BMP2 by protein-protein-interaction or modulating SMAD signaling was ruled out experimentally. Instead, we revealed inhibition of ERK signaling by MIA/CD-RAP. This inhibition is regulated via binding of MIA/CD-RAP to integrin α5 and abolishing its activity. Active ERK signaling is known to block chondrogenic differentiation and we revealed induction of aggrecan expression in chondrocytes by treatment with MIA/CD-RAP or PD098059, an ERK inhibitor. In in vivo models we could support the role of MIA/CD-RAP in influencing osteogenic differentiation negatively. Further, MIA/CD-RAP-deficient mice revealed an enhanced calcified cartilage layer of the articular cartilage of the knee joint and disordered arrangement of chondrocytes. Taken together, our data indicate that MIA/CD-RAP stabilizes cartilage differentiation and inhibits differentiation into bone potentially by regulating signaling processes during differentiation.
机译:黑色素瘤抑制活性/源自软骨的视黄酸敏感蛋白(MIA / CD-RAP)是恶性黑色素瘤细胞和软骨细胞分泌的一种小可溶性蛋白。最近,我们发现MIA / CD-RAP可以将骨形态发生蛋白(BMP)2诱导的成骨分化调节为软骨形成方向。在当前的研究中,我们旨在寻找这种MIA / CD-RAP功能的分子细节。实验上排除了MIA通过蛋白相互作用或调节SMAD信号传导对BMP2的直接影响。相反,我们揭示了MIA / CD-RAP对ERK信号的抑制。通过MIA / CD-RAP与整联蛋白α5的结合并消除其活性来调节这种抑制作用。已知活跃的ERK信号传导可阻断软骨形成分化,并且我们通过用EIA抑制剂MIA / CD-RAP或PD098059处理,诱导了软骨细胞中聚集蛋白聚糖表达的诱导。在体内模型中,我们可以支持MIA / CD-RAP在负面影响成骨分化中的作用。此外,MIA / CD-RAP缺陷型小鼠显示膝关节软骨的钙化软骨层增强,软骨细胞排列紊乱。两者合计,我们的数据表明MIA / CD-RAP稳定软骨分化并可能通过在分化过程中调节信号传导过程抑制向骨的分化。

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