1 The chimeric BCR-ABL gene

PhD John Groffen (Professor of Pathology) , PhD Nora Heisterkamp (Professor of Pathology)
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引用次数: 25

Abstract

The 1982 discovery that in chronic myeloid leukaemia (CML) the ABL proto-oncogene is translocated to the BCR gene located on chromosome 22 initiated many studies on the structural organization and function of these genes. The nucleotide sequence of the entire BCR and major parts of the ABL gene has now been determined. However, the actual cause of the fusion of BCR with ABL remains essentially unknown. Mouse models have been helpful to unravel the normal cellular function of BCR and ABL, as well the activity of BCR-ABL, although a single mechanism explaining the transforming activity of the latter has not been discovered. The cause of progression of the disease remains unknown, and no single genetic abnormality has been linked to the blast phase of CML. Much has been learned concerning the molecular biology of CML, but answers to the fundamental questions above may be expected in the coming years in parallel to increasing knowledge of genome structure, signal transduction and cell cycle control.

1嵌合BCR-ABL基因
1982年发现慢性髓性白血病(CML)中ABL原癌基因易位到位于22号染色体上的BCR基因上,这一发现开启了对这些基因的结构组织和功能的许多研究。现在已经确定了整个BCR和ABL基因主要部分的核苷酸序列。然而,BCR与ABL融合的真正原因仍然是未知的。小鼠模型有助于揭示BCR和ABL的正常细胞功能,以及BCR-ABL的活性,尽管尚未发现解释后者转化活性的单一机制。疾病进展的原因尚不清楚,没有单一的遗传异常与CML的胚期有关。关于CML的分子生物学已经了解了很多,但在未来几年,随着基因组结构、信号转导和细胞周期控制知识的增加,上述基本问题的答案可能会得到解答。
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