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TGF-β-like Transcriptional Effects of Thyroglobulin (Tg) in Mouse Mesangial Cells

机译:甲状腺球蛋白(Tg)在小鼠系膜细胞中的TGF-β样转录作用

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References(34) Cited-By(7) TGF-β-like activities of proteins unrelated to the cytokine could mimic its actions in fibrosis and cell proliferation. Thyroglobulin (Tg) has been identified as having a TGF-β receptor (TGFβR)-binding activity and is deposited in the glomerulus in certain immune-complex diseases. The aim of the present study is to determine whether Tg can reproduce the transcriptional activity of TGF-β1 in the mouse glomerular mesangial cell (MC), and to examine whether such activity is manifested through TGFβR. Real-time RT-PCR was employed to examine the effects of TGF-β1 and bovine Tg on the expression of three genes (TGF-β1, plasminogen activator inhibitor 1 [PAI-1], and Pax-8) regulated by TGF-β1 in other cell types. In addition, a pentacosapeptide TGF-β1 antagonist, β125 (41-65) was employed to determine whether the transcriptional activity of Tg was mediated through the TGF-β binding site on the TGFβR. A 6h exposure to TGF-β1 resulted in increased TGF-β1 and PAI-1 transcript, and a decrease in Pax-8. Similarly, a 6h exposure to Tg resulted in increases of about 5-fold in TGF-β1 and PAI-1 mRNA and a decrease of 53% in Pax-8. In comparison with other proteins, Tg had the greatest positive effect on TGF-β1 transcript levels. β125 (41-65) significantly reduced the TGF-β1-, but not the Tg-induced changes in TGF-β1, PAI-1 and Pax-8 transcript levels. We conclude from these studies that Tg possesses a TGF-β-mimetic transcriptional activity in the MC that is not mediated by its binding to TGFβR. These results suggest that Tg and other proteins could initiate glomerular injury by reproducing the actions of TGF-β1 in the mesangial cell.
机译:参考文献(34)与细胞因子无关的被引用的By(7)的TGF-β样蛋白活性可以模拟其在纤维化和细胞增殖中的作用。甲状腺球蛋白(Tg)已被确定具有TGF-β受体(TGFβR)结合活性,并沉积在某些免疫复合疾病的肾小球中。本研究的目的是确定Tg是否能在小鼠肾小球系膜细胞(MC)中复制TGF-β1的转录活性,并检查这种活性是否通过TGFβR表现出来。实时RT-PCR用于研究TGF-β1和牛Tg对TGF-β1调控的三个基因(TGF-β1,纤溶酶原激活物抑制剂1 [PAI-1]和Pax-8)表达的影响。在其他单元格类型中。另外,使用五糖肽TGF-β1拮抗剂β125(41-65)来确定Tg的转录活性是否通过TGFβR上的TGF-β结合位点介导。 TGF-β1暴露6h导致TGF-β1和PAI-1转录本增加,Pax-8减少。同样,Tg暴露6h会使TGF-β1和PAI-1 mRNA升高约5倍,而Pax-8降低53%。与其他蛋白质相比,Tg对TGF-β1转录水平具有最大的正作用。 β125(41-65)显着降低TGF-β1-,但不降低Tg诱导的TGF-β1,PAI-1和Pax-8转录水平的变化。从这些研究中我们得出结论,Tg在MC中具有TGF-β模拟转录活性,而不受其与TGFβR的结合介导。这些结果表明,Tg和其他蛋白可通过在肾小球系膜细胞中复制TGF-β1的作用来引发肾小球损伤。

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