首页> 美国卫生研究院文献>The EMBO Journal >Two distinct genetic loci regulating class II gene expression are defective in human mutant and patient cell lines.
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Two distinct genetic loci regulating class II gene expression are defective in human mutant and patient cell lines.

机译:在人类突变体和患者细胞系中调节II类基因表达的两个不同的遗传基因座存在缺陷。

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摘要

Heterokaryons were prepared and analyzed shortly after cell fusion using two mutant class-II-negative human B cell lines (RJ 2.2.5 and 6.1.6) and a cell line (TF) from a patient with a class-II-negative Bare Lymphocyte Syndrome. The resulting transient heterokaryons were analyzed by using an anti-HLA-DR monoclonal antibody to assess the cell surface expression of HLA-DR (the major subtype of class II antigens) by immunofluorescence microscopy and by using uniformly 32P-labeled SP6 RNA probes in Northern blots and RNase protection assays to assess mRNA synthesis. We find that class II gene expression in a B cell line from a Bare Lymphocyte Syndrome patient (TF) is rescued by a B cell line which expresses class II antigens indicating that this disease, at least in part, is caused by a defect(s) in a genetic locus encoding a factor(s) necessary for class II gene expression. Secondly, reciprocal genetic complementation was demonstrated in the heterokaryons 6.1.6 x RJ 2.2.5 and TF x RJ 2.2.5 (but not in TF x 6.1.6) by detection of cell surface DR by immunofluorescence microscopy and by a novel class II mRNA typing technique which allows characterization of distinct class II alleles. Thus, the two mutants generated in vitro have defects at two different genetic loci encoding specific regulatory factors necessary for human class II gene expression. One of these mutant cell lines, but not the other, complements the defect in the patient cell line, TF.
机译:细胞融合后立即使用两种突变的II类阴性人类B细胞系(RJ 2.2.5和6.1.6)和来自II类阴性裸淋巴细胞患者的细胞系(TF)制备并分析异核综合症。通过使用抗HLA-DR单克隆抗体通过免疫荧光显微镜和在Northern中使用均一的32P标记的SP6 RNA探针评估HLA-DR(II类抗原的主要亚型)的细胞表面表达,来分析所得的瞬时异核体印迹和RNase保护试验以评估mRNA合成。我们发现裸淋巴细胞综合症患者(TF)的B细胞系中的II类基因表达被表达II类抗原的B细胞系拯救,这表明该疾病至少部分是由缺陷引起的)编码II类基因表达所必需的一个或多个因子。其次,通过免疫荧光显微镜和新颖的II类检测细胞表面DR,在异核体6.1.6 x RJ 2.2.5和TF x RJ 2.2.5中(但在TF x 6.1.6中没有)证明了相互的遗传互补。 mRNA分型技术,可表征不同的II类等位基因。因此,体外产生的两个突变体在编码人类II类基因表达所必需的特定调控因子的两个不同的基因座处具有缺陷。这些突变细胞系中的一种,而不是另一种,可以补充患者细胞系TF中的缺陷。

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