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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Differential up-regulation of HLA class I molecules on neuronal and glial cell lines by virus infection correlates with differential induction of IFN-beta.
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Differential up-regulation of HLA class I molecules on neuronal and glial cell lines by virus infection correlates with differential induction of IFN-beta.

机译:病毒感染在神经元和神经胶质细胞系上HLA I类分子的差异上调与IFN-β的差异诱导有关。

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Adult neurons normally lack the expression of MHC class I molecules, which has implications on virus clearance from the central nervous system. The author previously demonstrated that HLA class I up-regulation in measles virus (MV)-infected glial cells is primarily mediated by IFN-beta. In contrast, this study demonstrates that MV-infection of the neuronal cell lines IMR-32 and CHP-126 fails to up-regulate HLA class I expression, which was associated with an inability of MV to induce IFN-beta in the neuronal cell lines. However, treatment with IFN-beta on coculture of the IMR-32 neuronal cell line with MV-infected glioma cells resulted in the up-regulation of HLA class I on the former, which could be neutralized by anti-IFN-beta Ab. The inability of MV to up-regulate HLA class I expression on the neuronal cell line IMR-32 was not virus specific because similar findings were observed with mumps virus or stimulation with the synthetic dsRNA polyinosinic polycytidylic acid (PIPC). Induction of IFN-beta gene expression by virus requires binding of NF-kappa B to the positive regulatory domain II element of the IFN-beta promoter. Our studies indicate that MV, TNF-alpha, or PIPC induces NF-kappa B (p50 and p65 subunits) binding to positive regulatory domain II in the glioma cell line. In contrast, such activity was induced by TNF-alpha but not MV or PIPC in the neuronal cell line IMR-32. This indicated that HLA class I expression is differentially regulated in glial and neuronal cell lines in response to MV, which correlates with differential binding of NF-kappa B to the IFN-beta promoter and induction of IFN-beta gene expression.
机译:成年神经元通常缺乏MHC I类分子的表达,这对病毒从中枢神经系统的清除具有影响。作者先前证明,麻疹病毒(MV)感染的神经胶质细胞中的HLA I类上调主要是由IFN-β介导的。相反,该研究表明神经元细胞系IMR-32和CHP-126的MV感染不能上调HLA I类表达,这与MV无法在神经元细胞系中诱导IFN-β有关。但是,在MV感染的神经胶质瘤细胞与IMR-32神经元细胞共培养的同时,用IFN-β进行处理会导致前者的HLA I类上调,可以被抗IFN-βAb中和。 MV无法上调神经元细胞系IMR-32上的HLA I类表达不是病毒特异性的,因为在腮腺炎病毒或合成dsRNA多肌苷酸聚胞苷酸(PIPC)刺激下观察到相似的发现。病毒诱导IFN-β基因表达需要将NF-κB与IFN-β启动子的正调控域II元件结合。我们的研究表明,MV,TNF-α或PIPC可以诱导NF-κB(p50和p65亚基)与神经胶质瘤细胞系中的正调控域II结合。相反,在神经细胞系IMR-32中,这种活性是由TNF-α而不是MV或PIPC诱导的。这表明响应MV,在胶质和神经元细胞系中HLA I类表达受到差异调节,这与NF-κB与IFN-β启动子的差异结合和IFN-β基因表达的诱导有关。

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