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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >An essential role of discoidin domain receptor 2 (DDR2) in osteoblast differentiation and chondrocyte maturation via modulation of Runx2 activation.
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An essential role of discoidin domain receptor 2 (DDR2) in osteoblast differentiation and chondrocyte maturation via modulation of Runx2 activation.

机译:Discoidin域受体2(DDR2)在成骨细胞分化和通过Runx2激活调节软骨细胞成熟中的重要作用。

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摘要

Discoidin domain receptor 2 (DDR2) belongs to receptor tyrosine kinase (RTK) family and is activated by collagen binding. Although the bone defects in Ddr2 null mice have been reported for a decade, the molecular mechanism remains unclear. This study sought to investigate the function and detailed mechanism of DDR2 in osteogenic and chondrogenic differentiation. Herein we found that in preosteoblastic cells, DDR2 activation was enhanced by osteogenic induction but was not paralleled with the alteration of DDR2 expression. Under differentiated condition, downregulation of endogenous DDR2 through specific shRNA dramatically repressed osteoblastic marker gene expression and osteogenic differentiation. Enforced expression of constitutively activated DDR2 increased the expression of bone markers in both undifferentiated and differentiated osteoblasts. Importantly, molecular evidence showed that DDR2 regulated the transactivity of Runx2, a master transcription factor involved in skeletal development, by modulating its phosphorylation. Analysis of candidate protein kinases indicated that extracellular signal-regulated kinase (ERK) activation is responsive to DDR2 signaling and involved in DDR2 regulation of Runx2 phosphorylation and transcriptional activity. Notably, a gain-of-function mutant of Runx2 with enhanced ERK-independent phosphorylation rescued the impaired osteogenic phenotypes observed in Ddr2-silenced cells, whereas a Runx2 mutant devoid of phosphorylation regulation by ERK inhibited DDR2 induction of osteogenesis. In addition, DDR2 facilitated Runx2 transactivation and type X collagen expression in hypertrophic chondrocytes. Thus this study reveals for the first time that DDR2 plays an essential role in osteoblast and chondrocyte differentiation. The mechanism disclosure may provide therapeutic targets for human genetic disorders caused by DDR2 deficiency.
机译:Discoidin域受体2(DDR2)属于受体酪氨酸激酶(RTK)家族,并通过胶原蛋白结合而被激活。尽管已经报道了Ddr2缺失小鼠的骨缺损已有十年,但其分子机制仍不清楚。本研究旨在探讨DDR2在成骨和软骨形成分化中的功能和详细机制。在本文中,我们发现在成骨前细胞中,成骨诱导增强了DDR2的激活,但与DDR2表达的改变并没有平行。在分化条件下,内源性DDR2通过特异的shRNA的下调可显着抑制成骨细胞标志物基因的表达和成骨分化。组成型激活的DDR2的强制表达增加了未分化和分化成骨细胞中骨标志物的表达。重要的是,分子证据表明,DDR2通过调节Runx2的磷酸化来调节其活性,Runx2是参与骨骼发育的主要转录因子。候选蛋白激酶的分析表明,细胞外信号调节激酶(ERK)激活对DDR2信号有响应,并参与Runx2磷酸化和转录活性的DDR2调节。值得注意的是,具有增强的ERK依赖性磷酸化的Runx2功能获得突变体挽救了在Ddr2沉默的细胞中观察到的成骨表型受损,而没有ERK磷酸化调控的Runx2突变体抑制了DDR2诱导的成骨性。另外,DDR2促进了肥大软骨细胞中Runx2反式激活和X型胶原蛋白的表达。因此,这项研究首次揭示了DDR2在成骨细胞和软骨细胞分化中起重要作用。该机制公开可以为由DDR2缺乏引起的人类遗传疾病提供治疗靶标。

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