首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Mutation in Osteoactivin Promotes Receptor Activator of NFκB Ligand (RANKL)-mediated Osteoclast Differentiation and Survival but Inhibits Osteoclast Function
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Mutation in Osteoactivin Promotes Receptor Activator of NFκB Ligand (RANKL)-mediated Osteoclast Differentiation and Survival but Inhibits Osteoclast Function

机译:破骨细胞活化素的突变可促进NFκB配体(RANKL)介导的破骨细胞分化和存活的受体激活剂但抑制破骨细胞功能

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摘要

We previously reported on the importance of osteoactivin (OA/Gpnmb) in osteogenesis. In this study, we examined the role of OA in osteoclastogenesis, using mice with a nonsense mutation in the Gpnmb gene (D2J) and wild-type controls (D2J/Gpnmb+). In these D2J mice, micro-computed tomography and histomorphometric analyses revealed increased cortical thickness, whereas total porosity and eroded surface were significantly reduced in D2J mice compared with wild-type controls, and these results were corroborated by lower serum levels of CTX-1. Contrary to these observations and counterintuitively, temporal gene expression analyses supported up-regulated osteoclastogenesis in D2J mice and increased osteoclast differentiation rates ex vivo, marked by increased number and size. The finding that MAPK was activated in early differentiating and mature D2J osteoclasts and that survival of D2J osteoclasts was enhanced and mediated by activation of the AKT-GSK3β pathway supports this observation. Furthermore, this was abrogated by the addition of recombinant OA to cultures, which restored osteoclastogenesis to wild-type levels. Moreover, mix and match co-cultures demonstrated an induction of osteoclastogenesis in D2J osteoblasts co-cultured with osteoclasts of D2J or wild-type. Last, in functional osteo-assays, we show that bone resorption activity of D2J osteoclasts is dramatically reduced, and these osteoclasts present an abnormal ruffled border over the bone surface. Collectively, these data support a model whereby OA/Gpnmb acts as a negative regulator of osteoclast differentiation and survival but not function by inhibiting the ERK/AKT signaling pathways.
机译:我们先前曾报道过骨激活素(OA / Gpnmb)在成骨中的重要性。在这项研究中,我们使用Gpnmb基因(D2J)中无意义突变的小鼠和野生型对照(D2J / Gpnmb + )检查了OA在破骨细胞形成中的作用。在这些D2J小鼠中,微计算机断层扫描和组织形态分析表明,与野生型对照组相比,D2J小鼠的皮质厚度增加了,而总孔隙率和被腐蚀的表面却明显减少了,并且这些结果被较低的CTX-1血清水平所证实。与这些观察结果和与直觉相反的是,时态基因表达分析支持D2J小鼠中破骨细胞的上调,并增加了体外破骨细胞的分化率,其特征是数量和大小增加。 MAPK在早期分化和成熟的D2J破骨细胞中被激活,并且AKT-GSK3β途径的激活增强了D2J破骨细胞的存活并介导了这一发现,这一发现支持了这一观点。此外,通过向培养物中添加重组OA来消除这种情况,这种方法可将破骨细胞生成恢复到野生型水平。此外,混合搭配配对培养证明了与D2J或野生型破骨细胞共培养的D2J成骨细胞中破骨细胞的诱导。最后,在功能性骨检测中,我们显示D2J破骨细胞的骨吸收活性显着降低,并且这些破骨细胞在骨表面上呈现出异常的皱纹边界。这些数据共同支持一个模型,其中OA / Gpnmb充当破骨细胞分化和存活的负调节剂,但不通过抑制ERK / AKT信号传导途径发挥作用。

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