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The role of the progressive ankylosis protein (ANK) in adipogenic/osteogenic fate decision of precursor cells

机译:渐进性ankylosis蛋白(ANK)在前体细胞的脂肪植物/骨质植物命运决策中的作用

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The progressive ankylosis protein (ANK) is a transmembrane protein that transports intracellular pyrophosphate (PPi) to the extracellular milieu. In this study we show increased fatty degeneration of the bone marrow of adult ank/ank mice, which lack a functional ANK protein. In addition, isolated bone marrow stromal cells (BMSCs) isolated from ank/ank mice showed a decreased proliferation rate and osteogenic differentiation potential, and an increased adipogenic differentiation potential compared to BMSCs isolated from wild type (WT) littermates. Wnt signaling pathway PCR array analysis revealed that Wnt ligands, Wnt receptors and Wnt signaling proteins that stimulate osteoblast differentiation were expressed at markedly lower levels in ank/ank BMSCs than in WT BMSCs. Lack of ANK function also resulted in impaired bone fracture healing, as indicated by a smaller callus formed and delayed bone formation in the callus site. Whereas 5 weeks after fracture, the fractured bone in WT mice was further remodeled and restored to original shape, the fractured bone in ank/ank mice was not fully restored and remodeled to original shape. In conclusion, our study provides evidence that ANK plays a critical role in the adipogenic/osteogenic fate decision of adult mesenchymal precursor cells. ANK functions in precursor cells are required for osteogenic differentiation of these cells during adult bone homeostasis and repair, whereas lack of ANK functions favors adipogenic differentiation. (C) 2017 Elsevier Inc. All rights reserved.
机译:渐进的窦病变蛋白(ANK)是一种跨膜蛋白,其将细胞内焦磷酸盐(PPI)转移到细胞外环境中。在这项研究中,我们展示了成年ANK / ANK小鼠骨髓的脂肪变性增加,其缺乏功能性ANK蛋白。此外,与ANK / ANK小鼠分离的分离的骨髓基质细胞(BMSC)表现出降低的增殖率和骨质发生分化电位,与与从野生型(WT)凋落物分离的BMSC相比增加的脂肪分化潜力。 WNT信号通路PCR阵列分析显示,WNT配体,WNT受体和WNT信号传导蛋白刺激成骨细胞分化在ANK / ANK BMSCs中的显着较低水平,而不是在WT BMSC中。缺乏ANK功能也导致骨折愈合受损,如较小的愈伤组织所示和愈伤组织部位延迟骨骼形成所示。较裂缝后5周,WT小鼠中的裂缝骨进一步改造并恢复到原始形状,ANK / ANK小鼠中的裂缝骨不完全恢复并改造原始形状。总之,我们的研究提供了证据表明ANK在成人间充质前体细胞的脂肪植物/成骨命运决策中发挥着关键作用。前体细胞中的ANK功能是在成人骨稳态和修复期间这些细胞的骨质发生分化所必需的,而缺乏ANK功能有利于脂肪切征。 (c)2017年Elsevier Inc.保留所有权利。

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