From the Departments of Odontology, Section for Molecular Periodontology, Umeå University, 901 87 Umea, Sweden.
J Biol Chem. 2013 Oct 11;288(41):29333-44. doi: 10.1074/jbc.M113.494591. Epub 2013 Aug 29.
Here, we investigated whether the cell surface glycoprotein CD47 was required for normal formation of osteoblasts and osteoclasts and to maintain normal bone formation activity in vitro and in vivo. In parathyroid hormone or 1α,25(OH)2-vitamin D3 (D3)-stimulated bone marrow cultures (BMC) from CD47(-/-) mice, we found a strongly reduced formation of multinuclear tartrate-resistant acid phosphatase (TRAP)(+) osteoclasts, associated with reduced expression of osteoclastogenic genes (nfatc1, Oscar, Trap/Acp, ctr, catK, and dc-stamp). The production of M-CSF and RANKL (receptor activator of nuclear factor κβ ligand) was reduced in CD47(-/-) BMC, as compared with CD47(+/+) BMC. The stromal cell phenotype in CD47(-/-) BMC involved a blunted expression of the osteoblast-associated genes osterix, Alp/Akp1, and α-1-collagen, and reduced mineral deposition, as compared with that in CD47(+/+) BMC. CD47 is a ligand for SIRPα (signal regulatory protein α), which showed strongly reduced tyrosine phosphorylation in CD47(-/-) bone marrow stromal cells. In addition, stromal cells lacking the signaling SIRPα cytoplasmic domain also had a defect in osteogenic differentiation, and both CD47(-/-) and non-signaling SIRPα mutant stromal cells showed a markedly reduced ability to support osteoclastogenesis in wild-type bone marrow macrophages, demonstrating that CD47-induced SIRPα signaling is critical for stromal cell support of osteoclast formation. In vivo, femoral bones of 18- or 28-week-old CD47(-/-) mice showed significantly reduced osteoclast and osteoblast numbers and exhibited an osteopenic bone phenotype. In conclusion, lack of CD47 strongly impairs SIRPα-dependent osteoblast differentiation, deteriorate bone formation, and cause reduced formation of osteoclasts.
在这里,我们研究了细胞表面糖蛋白 CD47 是否是体外和体内正常成骨细胞和破骨细胞形成以及维持正常骨形成活性所必需的。在甲状旁腺激素或 1α,25(OH)2-维生素 D3(D3)刺激的 CD47(-/-) 小鼠骨髓培养物 (BMC) 中,我们发现多核抗酒石酸酸性磷酸酶 (TRAP)(+)破骨细胞的形成明显减少,与破骨细胞生成基因 (nfatc1、Oscar、Trap/Acp、ctr、catK 和 dc-stamp) 的表达减少有关。与 CD47(+/+)BMC 相比,CD47(-/-)BMC 中产生的 M-CSF 和 RANKL(核因子 κβ配体受体激活剂)减少。与 CD47(+/+)BMC 相比,CD47(-/-)BMC 中的基质细胞表型涉及成骨相关基因osterix、Alp/Akp1 和α-1-胶原的表达减弱,以及矿化沉积减少。CD47 是 SIRPα(信号调节蛋白 α)的配体,CD47(-/-) 骨髓基质细胞中的 SIRPα 酪氨酸磷酸化明显减少。此外,缺乏信号 SIRPα 细胞质结构域的基质细胞也存在成骨分化缺陷,CD47(-/-)和非信号 SIRPα 突变基质细胞在野生型骨髓巨噬细胞中支持破骨细胞形成的能力明显降低,表明 CD47 诱导的 SIRPα 信号对于基质细胞支持破骨细胞形成至关重要。在体内,18 或 28 周龄 CD47(-/-) 小鼠的股骨显示破骨细胞和成骨细胞数量明显减少,并表现出骨质疏松骨表型。总之,缺乏 CD47 会强烈损害 SIRPα 依赖性成骨细胞分化,恶化骨形成,并导致破骨细胞形成减少。