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首页> 外文期刊>The journal of immunology >Regulation of MHC Class II Expression and Antigen Processing in Murine and Human Mesenchymal Stromal Cells by IFN-γ, TGF-β, and Cell Density
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Regulation of MHC Class II Expression and Antigen Processing in Murine and Human Mesenchymal Stromal Cells by IFN-γ, TGF-β, and Cell Density

机译:IFN-γ,TGF-β和细胞密度对小鼠和人间质基质细胞中MHC II类表达和抗原加工的调节

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Mesenchymal stromal cells (MSC) possess immunosuppressive properties, yet when treated with IFN-γ they acquire APC functions. To gain insight into MSC immune plasticity, we explored signaling pathways induced by IFN-γ required for MHC class II (MHC II)-dependent Ag presentation. IFN-γ-induced MHC II expression in mouse MSC was enhanced by high cell density or serum deprivation and suppressed by TGF-β. This process was regulated by the activity of the type IV CIITA promoter independently of STAT1 activation and the induction of the IFN regulatory factor 1-dependent B7H1/PD-L1 encoding gene. The absence of direct correlation with the cell cycle suggested that cellular connectivity modulates IFN-γ responsiveness for MHC II expression in mouse MSC. TGF-β signaling in mouse MSC involved ALK5 and ALK1 TGF-βRI, leading to the phosphorylation of Smad2/Smad3 and Smad1/Smad5/Smad8. An opposite effect was observed in human MSC where IFN-γ-induced MHC II expression occurred at the highest levels in low-density cultures; however, TGF-β reduced IFN-γ-induced MHC II expression and its signaling was similar as in mouse MSC. This suggests that the IFN-γ-induced APC features of MSC can be modulated by TGF-β, serum factors, and cell density in vitro, although not in the same way in mouse and human MSC, via their convergent effects on CIITA expression.
机译:间充质基质细胞(MSC)具有免疫抑制特性,但是当用IFN-γ处理时,它们具有APC功能。为了深入了解MSC的免疫可塑性,我们探索了MHC II类(MHC II)依赖性Ag呈递所需的IFN-γ诱导的信号通路。高细胞密度或血清剥夺可增强IFN-γ诱导的小鼠MSC中MHC II的表达,而TGF-β可抑制IFN-γ诱导的MHC II的表达。该过程由IV型CIITA启动子的活性独立于STAT1激活和IFN调节因子1依赖性B7H1 / PD-L1编码基因的诱导来调节。与细胞周期没有直接相关性表明细胞连通性调节了小鼠MSC中IFN-γ对MHC II表达的反应性。小鼠MSC中的TGF-β信号传导涉及ALK5和ALK1TGF-βRI,导致Smad2 / Smad3和Smad1 / Smad5 / Smad8的磷酸化。在人MSC中观察到相反的效果,其中IFN-γ诱导的MHC II表达在低密度培养物中最高水平。然而,TGF-β降低了IFN-γ诱导的MHC II表达,其信号传导与小鼠MSC中的相似。这表明,IFN-γ诱导的MSC的APC特征可以通过体外的TGF-β,血清因子和细胞密度来调节,尽管它们在小鼠和人MSC中的不同之处在于它们对CIITA表达的收敛作用。

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