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Ras致癌基因导致MHC I类分子表达下调的多种机制

Multiple levels of MHC class I down-regulation by ras oncogenes.

作者信息

Lohmann S, Wollscheid U, Huber C, Seliger B

机构信息

Johannes Gutenberg-University, Third Department of Internal Medicine, Mainz, Germany.

出版信息

Scand J Immunol. 1996 May;43(5):537-44. doi: 10.1046/j.1365-3083.1996.d01-73.x.

Abstract

A number of tumours and oncogene transformed cells displayed reduced MHC class I surface expression which seemed to enable their escape from immune surveillance. To test whether oncogenic activation is directly involved in suppressing MHC class I expression, a model of inducible oncogene expression was chosen. Mouse fibroblasts transfected with different oncogenes expressed under the control of the dexamethasone-inducible MMTV promoter were analysed in the presence and absence of hormone for the mRNA and protein expression of MHC class I molecules as well as the respective oncogenes. Immunofluorescence analyses demonstrated an inverse association of MHC class I and oncogene expression after dexamethasone stimulation, independent of the type of oncogene causing transformation. Hormone-mediated induction of oncogene expression caused down-regulation of all H-2 loci. Kinetic experiments using MMTV c-Ha-ras(A) transfectants revealed that down-regulation of MHC class I surface expression was preceded by a dexamethasone-induced change of morphology, anchorage-independent growth, and an increase of the ras protein p 21. Parallel monitoring of mRNA expression demonstrated a time-dependent up-regulation of ras specific transcripts, which was associated with differential regulation of MHC class I heavy and light chain transcripts. Beta2-microglobulin transcripts were transiently suppressed, whereas MHC class I heavy chain transcripts remained unaffected. To investigate the mechanisms of oncogene-mediated down-regulation of MHC class I expression, H-2 promoter transfections and a nuclear run on assays were performed. In MMTV c-Ha-ras(A) cells, neither alterations of the H-2 promoter activity nor of the transcriptional activity of H-2 antigens was observed in the presence of dexamethasone, whereas both could be up-regulated by interferon-gamma treatment. These data suggest that oncogene-mediated transformation is directly associated with MHC class I down-regulation, but that complex interactions affecting MHC class I heavy and light chain genes at the transcriptional and/or post-transcriptional level are involved in this process.

摘要

许多肿瘤和癌基因转化细胞表现出MHC I类分子表面表达降低,这似乎使其能够逃避免疫监视。为了测试致癌激活是否直接参与抑制MHC I类分子表达,选择了一种可诱导癌基因表达的模型。对用不同癌基因转染的小鼠成纤维细胞进行分析,这些癌基因在糖皮质激素诱导的MMTV启动子控制下表达,分别在有或无激素的情况下检测MHC I类分子以及相应癌基因的mRNA和蛋白表达。免疫荧光分析表明,糖皮质激素刺激后,MHC I类分子表达与癌基因表达呈负相关,与导致转化的癌基因类型无关。激素介导的癌基因表达诱导导致所有H-2位点下调。使用MMTV c-Ha-ras(A)转染细胞进行的动力学实验表明,MHC I类分子表面表达下调之前,糖皮质激素诱导细胞形态改变、不依赖贴壁生长以及ras蛋白p 21增加。对mRNA表达的平行监测表明,ras特异性转录本呈时间依赖性上调,这与MHC I类分子重链和轻链转录本的差异调节相关。β2-微球蛋白转录本被短暂抑制,而MHC I类分子重链转录本不受影响。为了研究癌基因介导的MHC I类分子表达下调的机制,进行了H-2启动子转染和核转录分析。在MMTV c-Ha-ras(A)细胞中,糖皮质激素存在时未观察到H-2启动子活性或H-2抗原转录活性的改变,而干扰素-γ处理可使其上调。这些数据表明,癌基因介导的转化与MHC I类分子下调直接相关,但在此过程中涉及影响MHC I类分子重链和轻链基因转录和/或转录后水平的复杂相互作用。

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