Itoh K, Udagawa N, Matsuzaki K, Takami M, Amano H, Shinki T, Ueno Y, Takahashi N, Suda T
Department of Biochemistry, School of Dentistry, Showa University, Tokyo, Japan.
J Bone Miner Res. 2000 Sep;15(9):1766-75. doi: 10.1359/jbmr.2000.15.9.1766.
SaOS-4/3, a subclone of the human osteosarcoma cell line SaOS-2, established by transfecting the human parathyroid hormone/parathyroid hormone-related protein (PTH/PTHrP) receptor complementary DNA (cDNA), supported osteoclast formation in response to PTH in coculture with mouse bone marrow cells. Osteoclast formation supported by SaOS-4/3 cells was completely inhibited by adding either osteoprotegerin (OPG) or antibodies against human macrophage colony-stimulating factor (M-CSF). Expression of messenger RNAs (mRNAs) for receptor activator of NF-kappaB ligand/osteoclast differentiation factor (RANKL/ODF) and both membrane-associated and secreted forms of M-CSF by SaOS-4/3 cells was up-regulated in response to PTH. SaOS-4/3 cells constitutively expressed OPG mRNA, expression of which was down-regulated by PTH. To elucidate the mechanism of PTH-induced osteoclastogenesis, SaOS-4/3 cells were spot-cultured for 2 h in the center of a culture well and then mouse bone marrow cells were uniformly plated over the well. When the spot coculture was treated for 6 days with both PTH and M-CSF, osteoclasts were induced exclusively inside the colony of SaOS-4/3 cells. Osteoclasts were formed both inside and outside the colony of SaOS-4/3 cells in coculture treated with a soluble form of RANKL/ODF (sRANKL/sODF) in the presence of M-CSF. When the spot coculture was treated with sRANKL/sODF, osteoclasts were formed only inside the colony of SaOS-4/3 cells. Adding M-CSF alone failed to support osteoclast formation in the spot coculture. PTH-induced osteoclast formation occurring inside the colony of SaOS-4/3 cells was not affected by the concentration of M-CSF in the culture medium. Mouse primary osteoblasts supported osteoclast formation in a similar fashion to SaOS-4/3 cells. These findings suggest that the up-regulation of RANKL/ODF expression is an essential step for PTH-induced osteoclastogenesis, and membrane- or matrix-associated forms of both M-CSF and RANKL/ ODF are essentially involved in osteoclast formation supported by osteoblasts/stromal cells.
SaOS-4/3是人类骨肉瘤细胞系SaOS-2的一个亚克隆,通过转染人类甲状旁腺激素/甲状旁腺激素相关蛋白(PTH/PTHrP)受体互补DNA(cDNA)建立,在与小鼠骨髓细胞共培养时,它能响应PTH支持破骨细胞形成。添加骨保护素(OPG)或抗人类巨噬细胞集落刺激因子(M-CSF)的抗体可完全抑制SaOS-4/3细胞支持的破骨细胞形成。SaOS-4/3细胞中核因子κB受体活化因子配体/破骨细胞分化因子(RANKL/ODF)以及M-CSF的膜相关形式和分泌形式的信使核糖核酸(mRNA)表达在响应PTH时上调。SaOS-4/3细胞组成性表达OPG mRNA,其表达受PTH下调。为阐明PTH诱导破骨细胞生成的机制,将SaOS-4/3细胞在培养孔中心点样培养2小时,然后将小鼠骨髓细胞均匀铺在孔上。当点样共培养用PTH和M-CSF处理6天时,破骨细胞仅在SaOS-4/3细胞集落内部诱导形成。在用可溶性形式的RANKL/ODF(sRANKL/sODF)在M-CSF存在下处理的共培养中,破骨细胞在SaOS-4/3细胞集落内外均形成。当点样共培养用sRANKL/sODF处理时,破骨细胞仅在SaOS-4/3细胞集落内部形成。单独添加M-CSF未能在点样共培养中支持破骨细胞形成。SaOS-4/3细胞集落内部发生的PTH诱导破骨细胞形成不受培养基中M-CSF浓度的影响。小鼠原代成骨细胞以与SaOS-4/3细胞类似的方式支持破骨细胞形成。这些发现表明,RANKL/ODF表达上调是PTH诱导破骨细胞生成的关键步骤,M-CSF和RANKL/ODF的膜相关或基质相关形式在成骨细胞/基质细胞支持的破骨细胞形成中起重要作用。