首页> 美国卫生研究院文献>American Journal of Translational Research >PAI-1 secretion of endometrial and endometriotic cells is Smad2/3- and ERK1/2-dependent and influences cell adhesion
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PAI-1 secretion of endometrial and endometriotic cells is Smad2/3- and ERK1/2-dependent and influences cell adhesion

机译:子宫内膜和子宫内膜异位细胞的PAI-1分泌依赖于Smad2 / 3-和ERK1 / 2并影响细胞黏附

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摘要

In the endometrium transforming growth factor-betas (TGF-βs) are involved mainly in menstruation and endometriosis. After binding of the ligands to the high-affinity receptors, TGF-β receptors (TBR1 and TBR2), TGF-βs activate Smad signaling to modulate gene expression and cellular functions. However, recently also Smad-independent pathways have been studied in more details. To evaluate both pathways, we have analyzed TGF-β signaling in human endometrial and endometriotic cells. Although endometrial and endometriotic cells secrete TGF-β1, secretion by stromal cells was higher compared to epithelial cells. In contrast, secretion of TGF-β2 was higher in endometriotic stromal and endometriotic epithelial cells compared to normal endometrial cells. Treatment of endometrial and endometriotic stromal and epithelial cells with TGF-β1 or TGF-β2 increased Smad-dependent secretion of plasminogen activator inhibitor-1 (PAI-1) dramatically in all three cell lines. Of note, endometriotic cells secreted clearly higher levels of PAI-1 compared to endometrial cells. Whereas a TBR1 kinase inhibitor completely blocked the TGF-β1 or TGF-β2-induced PAI-1 secretion, an ERK1/2 inhibitor only partially reduced PAI-1 secretion. This inhibition was not dependent on epidermal growth factor receptor (EGFR) activation by phosphorylation but on kinase activity of the TBR1. Finally, treatment of endometrial and endometriotic cell lines with recombinant PAI-1 showed reduced cell adhesion, especially of the endometrial cells. In summary, our results demonstrate that both Smad-dependent and TBR1-dependent ERK1/2 pathways are necessary for TGF-β-dependent high level secretion of PAI-1, which might increase cellular deadhesion.
机译:在子宫内膜中,转化生长因子-β(TGF-β)主要参与月经和子宫内​​膜异位。在配体与高亲和力受体TGF-β受体(TBR1和TBR2)结合后,TGF-βs激活Smad信号传导以调节基因表达和细胞功能。然而,最近还研究了与Smad无关的途径。为了评估这两种途径,我们分析了人类子宫内膜和子宫内膜异位细胞中的TGF-β信号传导。尽管子宫内膜和子宫内膜异位细胞分泌TGF-β1,但与上皮细胞相比,基质细胞的分泌更高。相反,与正常子宫内膜细胞相比,子宫内膜异位基质和子宫内膜异位上皮细胞中TGF-β2的分泌更高。在所有这三种细胞系中,用TGF-β1或TGF-β2处理子宫内膜和子宫内膜异位基质细胞和上皮细胞会显着增加Smad依赖的纤溶酶原激活物抑制剂1(PAI-1)的Smad依赖性分泌。值得注意的是,子宫内膜异位细胞分泌的PAI-1水平明显高于子宫内膜细胞。 TBR1激酶抑制剂完全阻断TGF-β1或TGF-β2诱导的PAI-1分泌,而ERK1 / 2抑制剂仅能部分减少PAI-1的分泌。这种抑制作用不依赖于表皮生长因子受体(EGFR)的磷酸化激活,而是依赖于TBR1的激酶活性。最后,用重组PAI-1处理子宫内膜和子宫内膜异位细胞系显示降低的细胞粘附,特别是子宫内膜细胞的粘附。总之,我们的结果表明,依赖Smad的和依赖TBR1的ERK1 / 2途径对于TGF-β依赖的PAI-1的高水平分泌都是必需的,这可能会增加细胞粘连。

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