首页> 美国卫生研究院文献>The Journal of Biological Chemistry >BMP-2/4 and BMP-6/7 Differentially Utilize Cell Surface Receptors to Induce Osteoblastic Differentiation of Human Bone Marrow-derived Mesenchymal Stem Cells
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BMP-2/4 and BMP-6/7 Differentially Utilize Cell Surface Receptors to Induce Osteoblastic Differentiation of Human Bone Marrow-derived Mesenchymal Stem Cells

机译:BMP-2 / 4和BMP-6 / 7差异利用细胞表面受体 诱导人骨髓间充质的成骨细胞分化 干 细胞

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摘要

Bone morphogenetic proteins (BMPs) are members of the transforming growth factor-β superfamily of growth factors and are used clinically to induce new bone formation. The purpose of this study was to evaluate receptor utilization by BMP-2, BMP-4, BMP-6, and BMP-7 in primary human mesenchymal stem cells (hMSC), a physiologically relevant cell type that probably mediates the in vivo effects of BMPs. RNA interference-mediated gene knockdown revealed that osteoinductive BMP activities in hMSC are elicited through the type I receptors ACVR1A and BMPR1A and the type II receptors ACVR2A and BMPR2. BMPR1B and ACVR2B were expressed at low levels and were not found to play a significant role in signaling by any of the BMPs evaluated in this study. Type II receptor utilization differed significantly between BMP-2/4 and BMP-6/7. A greater reliance on BMPR2 was observed for BMP-2/4 relative to BMP-6/7, whereas ACVR2A was more critical to signaling by BMP-6/7 than BMP-2/4. Significant differences were also observed for the type I receptors. Although BMP-2/4 used predominantly BMPR1A for signaling, ACVR1A was the preferred type I receptor for BMP-6/7. Signaling by both BMP-2/4 and BMP-6/7 was mediated by homodimers of ACVR1A or BMPR1A. A portion of BMP-2/4 signaling also required concurrent BMPR1A and ACVR1A expression, suggesting that BMP-2/4 signal in part through ACVR1A/BMPR1A heterodimers. The capacity of ACVR1A and BMPR1A to form homodimers and heterodimers was confirmed by bioluminescence resonance energy transfer analyses. These results suggest different mechanisms for BMP-2/4- and BMP-6/7-induced osteoblastic differentiation in primary hMSC.
机译:骨形态发生蛋白(BMP)是生长因子的转化生长因子-β超家族的成员,并在临床上用于诱导新的骨形成。这项研究的目的是评估BMP-2,BMP-4,BMP-6和BMP-7在原代人间充质干细胞(hMSC)中的受体利用,hMSC是一种生理相关的细胞类型,可能介导了HMP的体内作用。 BMP。 RNA干扰介导的基因敲低表明,hMSC中的骨诱导性BMP活性是通过I型受体ACVR1A和BMPR1A以及II型受体ACVR2A和BMPR2引起的。 BMPR1B和ACVR2B的表达水平很低,但在本研究中评估的任何BMP中均未发现它们在信号转导中起重要作用。 II型受体的利用在BMP-2 / 4和BMP-6 / 7之间有显着差异。相对于BMP-6 / 7,观察到BMP-2 / 4对BMPR2的依赖性更大,而ACVR2A对BMP-6 / 7的信号传导比BMP-2 / 4更为关键。对于I型受体也观察到显着差异。尽管BMP-2 / 4主要使用BMPR1A进行信号传导,但ACVR1A是BMP-6 / 7的首选I型受体。 BMP-2 / 4和BMP-6 / 7的信号均由ACVR1A或BMPR1A的同二聚体介导。还需要一部分BMP-2 / 4信令 BMPR1A和ACVR1A并发表达,表明BMP-2 / 4信号在 部分通过ACVR1A / BMPR1A异二聚体。 ACVR1A和BMPR1A的容量 生物发光共振证实了同型二聚体和异二聚体的形式 能量转移分析。这些结果表明了不同的机制 BMP-2 / 4-和BMP-6 / 7诱导的原代hMSC分化为成骨细胞。

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