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Altered binding of regulatory factors to HLA class I enhancer sequence in human tumor cell lines lacking class I antigen expression.

机译:在缺乏I类抗原表达的人类肿瘤细胞系中,调节因子与HLA I类增强子序列的结合发生了改变。

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摘要

Class I antigens encoded in the major histocompatibility complex (MHC) (HLA in man, H-2 in the mouse) play a key role in the recognition of target cells by cytolytic T lymphocytes. Tumor cells frequently do not express class I MHC molecules, which strongly suggests that down-regulation of the latter facilitates escape of tumor cells from immune surveillance. The expression of class I MHC genes is tightly regulated. An enhancer element, conserved in the promoters of mouse and human MHC genes, has been shown to be important for mouse class I MHC gene expression. At least two related regulatory factors (KBF1 and NF-kappa B) bind to this regulatory element. We have analyzed the binding of these factors in cellular extracts of 23 human tumor cell lines displaying various levels of class I mRNA and surface expression. In this panel, combined deficiency of KBF1- and NF-kappa B-like DNA-binding activities was frequent among the class I-negative cell lines and correlated with the absence of class I mRNA. A few cell lines that lack KBF1 binding activity still display NF-kappa B-like activity and express normal levels of MHC class I mRNA. These results suggest (i) that, in the absence of KBF1, NF-kappa B or a related factor promotes MHC class I gene transcription; and (ii) that a combined defect in KBF1/NF-kappa B DNA-binding activity can cause a pleiotropic defect in class I gene expression, which may facilitate tumor progression.
机译:主要组织相容性复合体(MHC)(人中为HLA,小鼠中为H-2)编码的I类抗原在溶细胞性T淋巴细胞识别靶细胞中起关键作用。肿瘤细胞通常不表达I类MHC分子,这强烈表明后者的下调促进了肿瘤细胞逃避免疫监视。 I类MHC基因的表达受到严格调节。在小鼠和人类MHC基因的启动子中保守的增强子元素已被证明对小鼠I类MHC基因表达很重要。至少两个相关的调节因子(KBF1和NF-κB)与该调节元件结合。我们已经分析了23种人类肿瘤细胞系细胞提取物中这些因子的结合,这些细胞系显示出不同水平的I类mRNA和表面表达。在该小组中,KBF1和NF-κB类DNA结合活性的联合缺乏症在I类阴性细胞系中很常见,并且与I类mRNA的缺失有关。一些缺乏KBF1结合活性的细胞系仍显示出NF-κB样活性并表达正常水平的MHC I类mRNA。这些结果表明:(i)在没有KBF1的情况下,NF-κB或相关因子会促进MHC I类基因的转录; (ii)KBF1 /NF-κBDNA结合活性的联合缺陷会导致I类基因表达的多效性缺陷,从而可能促进肿瘤的进展。

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