Translocations among antibody genes in human cancer.

P. Leder
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引用次数: 54

Abstract

The characteristic chromosomal translocations that occur in certain human malignancies offer opportunities to understand how two gene systems can affect one another when they are accidentally juxtaposed. In the case of Burkitt's lymphoma, such a translocation joins the cellular oncogene, c-myc, to a region encoding one of the immunoglobulin genes. In at least one example, the coding sequence of the rearranged c-myc gene is identical to that of the normal gene, implying that the gene must be quantitatively, rather than qualitatively, altered in its expression if it is to play a role in transformation. One might expect to find the rearranged c-myc gene in a configuration that would allow it to take advantage of one of the known immunoglobulin promoters or enhancer elements. However, the rearranged c-myc gene is often placed so that it can utilize neither of these structures. Since the level of c-myc messenger RNA is often elevated in Burkitt cells, the translocation may lead to a deregulation of the c-myc gene. Further, since the normal allele in a Burkitt cell is often transcriptionally silent in the presence of a rearranged allele, a model for c-myc regulation is suggested that involves a trans-acting negative control element that might use as its target a highly conserved portion of the c-myc gene encoding two discrete transcriptional promoters.
人类癌症中抗体基因的易位。
在某些人类恶性肿瘤中发生的特征性染色体易位提供了了解两个基因系统在意外并置时如何相互影响的机会。在伯基特淋巴瘤的病例中,这种易位将细胞癌基因c-myc连接到编码免疫球蛋白基因之一的区域。在至少一个例子中,重排的c-myc基因的编码序列与正常基因的编码序列相同,这意味着如果要在转化中发挥作用,该基因必须在数量上而不是在质量上改变其表达。人们可能期望发现重排的c-myc基因在一种配置中,允许它利用已知的免疫球蛋白启动子或增强元件之一。然而,重排的c-myc基因通常被放置在不能利用这两种结构的位置。由于c-myc信使RNA的水平在Burkitt细胞中经常升高,易位可能导致c-myc基因的失调。此外,由于Burkitt细胞中的正常等位基因在存在重排等位基因时通常在转录上沉默,因此提出了一种c-myc调控模型,该模型涉及反式作用的阴性控制元件,该元件可能使用c-myc基因中编码两个离散转录启动子的高度保守部分作为其靶标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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