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集落刺激因子-1诱导的破骨细胞铺展取决于底物,且需要玻连蛋白受体和原癌基因c-src。

Colony stimulating factor-1-induced osteoclast spreading depends on substrate and requires the vitronectin receptor and the c-src proto-oncogene.

作者信息

Teti A, Taranta A, Migliaccio S, Degiorgi A, Santandrea E, Villanova I, Faraggiana T, Chellaiah M, Hruska K A

机构信息

Department of Experimental Medicine, University of L'Aquila, Italy.

出版信息

J Bone Miner Res. 1998 Jan;13(1):50-8. doi: 10.1359/jbmr.1998.13.1.50.

Abstract

The colony stimulating factor 1 (CSF-1) regulates osteoclastogenesis and bone resorption. Mutations in the CSF-1 gene cause an osteopetrosis characterized by the absence of osteoclasts. Mature osteoclasts respond to CSF-1 with inhibition of bone resorption and an increment of cell spreading. Herein we demonstrate that CSF-1-induced osteoclast spreading depends on the substrate the osteoclast interacts with and requires integrity of the vitronectin receptor and of the c-src proto-oncogene. Rabbit osteoclasts were allowed to attach to glass, serum, osteopontin, and bone substrates, and were treated with 10 ng/ml human recombinant CSF-1 for 4 h. In osteoclasts plated on glass, the cytokine induced 70% inhibition of bone resorption and 1.8-fold stimulation of cell spreading, without changes in podosome expression and microfilament array. In contrast, CSF-1 induced a 2.5-fold increase of osteoclasts showing filopodia, and a 9.5-fold increase of osteoclasts presenting lamellipodia, indicating that membrane motility was required for cell spreading. Osteoclasts plated on serum substrates showed a 50% reduction of spontaneous spreading. However, in this circumstance, CSF-1 still stimulated an increase of osteoclast area. In osteoclasts cultured on osteopontin substrate or on bone slices, an inhibition of CSF-1-induced osteoclast spreading was observed. To establish involvement of the vitronectin receptor and c-src proto-oncogene, cells were treated with the alpha vbeta3 integrin neutralizing antibody, LM609, or c-src antisense oligonucleotides, which reduced CSF-1-induced osteoclast spreading by 57% and 60%, respectively. The results demonstrate that CSF-1-induced osteoclast spreading requires both the vitronectin receptor and the c-src proto-oncogene and that this action is modulated by the adhesion substrata.

摘要

集落刺激因子1(CSF-1)调节破骨细胞生成和骨吸收。CSF-1基因的突变会导致一种以破骨细胞缺失为特征的骨质石化。成熟破骨细胞对CSF-1的反应是骨吸收受到抑制,细胞铺展增加。在此我们证明,CSF-1诱导的破骨细胞铺展取决于破骨细胞与之相互作用的底物,并且需要玻连蛋白受体和c-src原癌基因的完整性。将兔破骨细胞接种于玻璃、血清、骨桥蛋白和骨底物上,并用10 ng/ml人重组CSF-1处理4小时。在接种于玻璃上的破骨细胞中,该细胞因子诱导骨吸收抑制70%,细胞铺展刺激1.8倍,而足体表达和微丝阵列无变化。相比之下,CSF-1诱导显示丝状伪足的破骨细胞增加2.5倍,呈现片状伪足的破骨细胞增加9.5倍,表明膜运动性是细胞铺展所必需的。接种于血清底物上的破骨细胞自发铺展减少50%。然而,在这种情况下,CSF-1仍刺激破骨细胞面积增加。在骨桥蛋白底物或骨切片上培养的破骨细胞中,观察到CSF-1诱导的破骨细胞铺展受到抑制。为确定玻连蛋白受体和c-src原癌基因的参与情况,用αvβ3整合素中和抗体LM609或c-src反义寡核苷酸处理细胞,它们分别使CSF-1诱导的破骨细胞铺展减少57%和60%。结果表明,CSF-1诱导的破骨细胞铺展既需要玻连蛋白受体,也需要c-src原癌基因,并且这种作用受到黏附底物的调节。

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