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首页> 外文期刊>The biochemical journal >Regulation of transformation-sensitive secreted phosphoprotein (SPPI/osteopontin) expression by transforming growth factor-β. Comparisons with expression of SPARC (secreted acidic cysteine-rich protein)
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Regulation of transformation-sensitive secreted phosphoprotein (SPPI/osteopontin) expression by transforming growth factor-β. Comparisons with expression of SPARC (secreted acidic cysteine-rich protein)

机译:通过转化生长因子-β调节转化敏感性分泌的磷蛋白(SPPI /骨桥蛋白)表达。与SPARC(分泌的酸性半胱氨酸富集蛋白)表达的比较

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摘要

pSecreted phosphoprotein I (SPPI; osteopontin), a highly phosphorylated form of which has been associated with cell transformation, is one of the major phosphorylated proteins in bone. Populations of rat bone cells derived from fetal calvariae, neonatal parietal bone and a rat osteosarcoma cell line (ROS 17/2.8) produce several forms of the protein, the major forms having apparent molecular masses of 55 and 44 kDa by SDS/PAGE on 15% (w/v) cross-linked gels and of 60 and 56 kDa on 10% gels. Northern blot analysis of SPPI mRNA using total cellular RNA revealed a single 1.5 kb mRNA species, indicating that the nascent protein chains of these phosphoproteins are identical. On treatment of the cells with transforming growth factor-beta (TGF-beta; 1 ng/ml), the levels of SPPI mRNA and the synthesis of the 55 kDa phosphoprotein, but not of the 44 kDa phosphoprotein, were increased by 1.8-4.5-fold in the normal osteoblastic cells, the stimulation first being evident at 3 h and reaching a maximum at 12 h. In the transformed ROS 17/2.8 cells, TGF-beta did not alter significantly the SPPI mRNA level or the synthesis of either the 55 kDa or the 44 kDa SPPI over the 24 h period studied. By comparison, neither the steady-state levels of SPARC (secreted protein, acidic, rich in cysteine) mRNA nor the synthesis of SPARC protein were affected significantly by the addition of TGF-beta to any of the osteoblastic bone cells. The half-lives for SPPI and SPARC mRNAs in the osteoblastic calvarial cells were calculated to be 18 h and greater than 50 h respectively, in both the presence and the absence of TGF-beta. Since the stability of the mRNA was unchanged by TGF-beta and the increased expression of SPPI mRNA could be blocked by cycloheximide, TGF-beta appears to increase transcription of the SppI gene indirectly by stimulating the synthesis of a protein that promotes transcription. These results demonstrate that several forms of SPPI are synthesized constitutively by bone cells, and that there are clear differences in the regulation of SppI gene expression by TGF-beta in normal bone cells compared with the tumorigenic ROS 17/2.8 cells. The differential responses of normal osteoblastic cells to TGF-beta in the expression of SPPI and the selective stimulation of specific forms of the SPPI protein may be important in bone repair and remodelling./p
机译:磷酸化的I蛋白(SPPI;骨桥蛋白)是一种高度磷酸化的形式,与细胞转化有关,是骨骼中主要的磷酸化蛋白之一。源自胎儿颅盖,新生顶叶骨和大鼠骨肉瘤细胞系(ROS 17 / 2.8)的大鼠骨细胞群体可产生几种形式的蛋白质,主要形式通过15的SDS / PAGE观察到分子量分别为55和44 kDa。 %(w / v)的交联凝胶,在10%凝胶上分别为60和56kDa。使用总细胞RNA对SPPI mRNA进行Northern blot分析发现单个1.5 kb mRNA种类,表明这些磷蛋白的新生蛋白链是相同的。用转化生长因子-β(TGF-β; 1 ng / ml)处理细胞后,SPPI mRNA的水平和55 kDa磷蛋白(而非44 kDa磷蛋白)的合成增加了1.8-4.5在正常的成骨细胞中有3倍的刺激,首先在3小时时可见刺激,并在12小时时达到最大。在转化的ROS 17 / 2.8细胞中,在研究的24小时内,TGF-β不会显着改变SPPI mRNA水平或55 kDa或44 kDa SPPI的合成。相比之下,向任何成骨细胞中添加TGF-β都不会显着影响SPARC(分泌的蛋白质,酸性,富含半胱氨酸的mRNA)的稳态水平或SPARC蛋白质的合成。在存在和不存在TGF-β的情况下,在成骨性颅盖细胞中SPPI和SPARC mRNA的半衰期分别计算为18 h和大于50 h。由于TGF-β不会改变mRNA的稳定性,而环己酰亚胺可以阻止SPPI mRNA的增加表达,因此TGF-β似乎可以通过刺激合成促进转录的蛋白质来间接增加SppI基因的转录。这些结果表明,骨细胞组成性地合成了几种形式的SPPI,与致瘤性ROS 17 / 2.8细胞相比,正常骨细胞中TGF-β对SppI基因表达的调节存在明显差异。正常成骨细胞对TGF-β的SPPI表达的差异反应以及SPPI蛋白特定形式的选择性刺激可能在骨修复和重塑中很重要。

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