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Fibroblast growth factor enhances type beta 1 transforming growth factor gene expression in osteoblast-like cells

机译:成纤维细胞生长因子增强成骨样细胞中β1型转化生长因子基因的表达

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摘要

Fibroblast growth factor (FGF) and type beta transforming growth factor (TGF beta) are potent modulators of proliferation and differentiation in many types of cells. TGF beta acts in an autocrine manner, and the regulation of TGF beta gene expression is one of the crucial events in the control of cellular functions. This study examines FGF regulation of TGF beta 1 gene expression in osteoblast-like cells. Bovine basic FGF (bFGF) increased the steady-state level of 2.5-kb TGF beta 1 mRNA two- to threefold in rat osteosarcoma (ROS17/2.8) cells in a dose- dependent manner, starting at 0.1 ng/ml. The increase of the message was detectable within 3 h after the addition of bFGF, peaked at 6 h, and lasted at least up to 48 h. This effect was blocked by a protein kinase inhibitor, K252a, indicating the involvement of phosphorylation. bFGF increased the rate of TGF beta 1 gene transcription estimated by nuclear run-on assay, while the stability of TGF beta 1 mRNA was not altered. bFGF increased the TGF beta activity in the conditioned media, estimated by DNA synthesis inhibition assay using mink lung epithelial (CCL-64) cells. Parathyroid hormone reduced the abundance of TGF beta 1 mRNA in ROsS17/2.8 cells and opposed the bFGF effect on TGF beta 1 mRNA. bFGF also increased the steady-state level of TGF beta 1 mRNA in mouse calvaria-derived MC3T3E1 and human osteosarcoma SaOS-2 cells. These findings indicate that FGF enhances the expression of TGF beta 1 gene in osteoblast-like cells and point to the tight relationship of the two growth factors involved in the control of cellular functions.
机译:成纤维细胞生长因子(FGF)和β型转化生长因子(TGFβ)是许多类型细胞中增殖和分化的有效调节剂。 TGFβ以自分泌方式发挥作用,调节TGFβ基因表达是控制细胞功能的关键事件之一。这项研究检查了成骨细胞样细胞中TGFβ1基因表达的FGF调节。牛碱性FGF(bFGF)以0.1 ng / ml的剂量依赖性方式将大鼠骨肉瘤(ROS17 / 2.8)细胞中2.5-kb TGFβ1mRNA的稳态水平提高了两倍至三倍。在添加bFGF后3小时内可检测到信息的增加,在6小时达到峰值,并持续至少48小时。这种作用被蛋白激酶抑制剂K252a阻断,表明其参与了磷酸化作用。 bFGF增加了通过核运行分析估计的TGFβ1基因转录的速率,而TGFβ1mRNA的稳定性没有改变。通过使用水貂肺上皮(CCL-64)细胞进行的DNA合成抑制测定,bFGF可提高条件培养基中的TGFβ活性。甲状旁腺激素可降低ROsS17 / 2.8细胞中TGFβ1mRNA的含量,并对抗bFGF对TGFβ1mRNA的影响。 bFGF还增加了小鼠颅盖来源的MC3T3E1和人骨肉瘤SaOS-2细胞中TGFβ1mRNA的稳态水平。这些发现表明,FGF增强了成骨细胞样细胞中TGFβ1基因的表达,并指出了参与控制细胞功能的两种生长因子的紧密关系。

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