白血病
癌症
生物
染色体易位
急性白血病
癌症研究
突变
融合基因
癌症的体细胞进化
遗传学
癌细胞
基因
免疫学
作者
Dengli Hong,Rajeev Gupta,Philip Ancliff,Ann Atzberger,John Brown,Shamit Soneji,Jonathan Green,Sue Colman,Wanda Piacibello,Veronica J. Buckle,Shinobu Tsuzuki,Mel Greaves,Tariq Enver
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2008-01-18
卷期号:319 (5861): 336-339
被引量:380
标识
DOI:10.1126/science.1150648
摘要
Understanding cancer pathogenesis requires knowledge of not only the specific contributory genetic mutations but also the cellular framework in which they arise and function. Here we explore the clonal evolution of a form of childhood precursor–B cell acute lymphoblastic leukemia that is characterized by a chromosomal translocation generating a TEL-AML1 fusion gene. We identify a cell compartment in leukemic children that can propagate leukemia when transplanted in mice. By studying a monochorionic twin pair, one preleukemic and one with frank leukemia, we establish the lineal relationship between these “cancer-propagating” cells and the preleukemic cell in which the TEL-AML1 fusion first arises or has functional impact. Analysis of TEL-AML1 –transduced cord blood cells suggests that TEL-AML1 functions as a first-hit mutation by endowing this preleukemic cell with altered self-renewal and survival properties.
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