费城易位的分子分析。

Hematologic pathology Pub Date : 1991-01-01
N Heisterkamp, J Groffen
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引用次数: 0

摘要

Ph染色体是人类中第一个与特定肿瘤疾病相关的特定核型异常。多年来,人们一直怀疑染色体异常可能通过改变特定基因或其表达而导致癌症。最近在我们对Ph易位的分子后果的理解方面的重大进展加强了这一假设。Ph易位产生了一个杂交基因,包括22号染色体上bcr基因的5'调控、启动子和外显子序列融合到3'外显子和9号染色体上ABL原癌基因的多聚腺苷化/终止序列。bcr和abl基因的融合在CML和ALL的发病机制中起着至关重要的作用。因此,分子方法可用作检测Ph染色体的诊断工具。目前,通过我们对abl原癌基因如何因Ph易位而被激活的知识所提供的肿瘤发生模型是最清晰的癌基因激活模型之一。尽管取得了进展,但仍有许多领域有待探索。一个重要的问题是,这种杂交蛋白是如何参与白血病的。旨在研究abl和bcr的正常功能的研究可能对了解它们在白血病中的异常功能和增加我们对这种疾病的了解很重要。
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Molecular insights into the Philadelphia translocation.

The Ph chromosome was the first specific karyotype abnormality associated with a particular neoplastic disease in humans. For many years it was suspected that chromosome abnormalities might cause cancer by alteration of specific genes or their expression. Significant recent developments in our understanding of the molecular consequences of the Ph translocation strengthen that assumption. The Ph translocation generates a hybrid gene consisting of 5' regulatory, promotor, and exon sequences of the bcr gene on chromosome 22 fused to 3' exons and polyadenylation/termination sequences of the ABL proto-oncogene from chromosome 9. It is well established that fusion of bcr and abl genes plays a crucial role in the pathogenesis of CML and ALL. Molecular methods can therefore be used as diagnostic tools to detect the Ph chromosome. Presently, the model of oncogenesis provided by our knowledge of how the abl proto-oncogene becomes activated as a result of the Ph translocation is one of the clearest models of oncogene activation. Despite the progress made, many areas remain to be explored. One important question is, how the hybrid protein is involved in leukemia. Research aimed at investigating the normal function of abl and bcr may be important in efforts to understand their abnormal functioning in leukemia and to increase our understanding of the disease.

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