Winkelmann J C, Ward J, Mayeux P, Lacombe C, Schimmenti L, Jenkins R B
Department of Internal Medicine, University of Cincinnati College of Medicine, OH.
Blood. 1995 Jan 1;85(1):179-85.
We previously identified a translocation breakpoint in exon 8 of the erythropoietin receptor (EpoR) gene in TF-1 cells, a cell line derived from a human erythroleukemia. To investigate the potential pathogenetic significance of this abnormality, we more precisely mapped the breakpoint within exon 8 and studied the expression of the translocated gene by S1 nuclease mapping of EpoR transcripts and chemical crosslinking of labeled erythropoietin (Epo) to TF-1 cell surface receptors. Transcripts from the abnormal gene were found to be highly expressed in relation to normal EpoR transcripts in TF-1 cells. The breakpoint predicted by S1 mapping of abnormal EpoR transcripts agreed closely with that determined by Southern analysis. Chemical cross-linking of 125I-Epo to TF-1 cells showed an abnormal, low-molecular-weight cross-linked species directly recognized by anti-EpoR antibodies and present in considerable excess over the normal EpoR. Karyotype analysis showed that each of 10 TF-1 cell metaphases had, in addition to multiple other alterations, one chromosome 19 with additional chromosomal material translocated onto the short arm at 19p13.3, the location of the EpoR gene. We conclude that the structurally abnormal EpoR gene in TF-1 cells is highly expressed and produces an abnormal protein. We speculate that the chromosomal material brought into the EpoR locus by translocation is responsible for the high level of expression. We hypothesize that this translocation participated in the evolution of the erythroleukemia from which TF-1 cells were derived.
我们之前在TF-1细胞中鉴定出促红细胞生成素受体(EpoR)基因第8外显子的一个易位断点,TF-1细胞系源自一名人类红白血病患者。为了研究这种异常的潜在致病意义,我们更精确地定位了第8外显子内的断点,并通过对EpoR转录本进行S1核酸酶图谱分析以及将标记的促红细胞生成素(Epo)与TF-1细胞表面受体进行化学交联,来研究易位基因的表达情况。结果发现,与TF-1细胞中的正常EpoR转录本相比,异常基因的转录本高表达。通过对异常EpoR转录本进行S1图谱分析预测的断点与Southern分析确定的断点非常吻合。将125I-Epo与TF-1细胞进行化学交联,结果显示存在一种异常的低分子量交联产物,该产物可被抗EpoR抗体直接识别,且其含量大大超过正常EpoR。核型分析表明,10个TF-1细胞中期相中的每一个,除了有多个其他改变外,都有一条19号染色体,其短臂19p13.3处(EpoR基因的位置)有额外的染色体物质易位到上面。我们得出结论,TF-1细胞中结构异常的EpoR基因高表达并产生一种异常蛋白质。我们推测,通过易位带入EpoR基因座的染色体物质是导致高表达水平的原因。我们假设这种易位参与了TF-1细胞所源自的红白血病的演变过程。