Lo Anthony W I, Sabatier Laure, Fouladi Bijan, Pottier Géraldine, Ricoul Michelle, Murnane John P
Radiation Oncology Research Laboratory, University of California, 1855 Folsom Street, MCB 200, San Francisco, CA 94103, USA.
Neoplasia. 2002 Nov-Dec;4(6):531-8. doi: 10.1038/sj.neo.7900267.
The development of genomic instability is an important step in generating the multiple genetic changes required for cancer. One consequence of genomic instability is the overexpression of oncogenes due to gene amplification. One mechanism for gene amplification is the breakage/fusion/bridge (B/F/B) cycle that involves the repeated fusion and breakage of chromosomes following the loss of a telomere. B/F/B cycles have been associated with low-copy gene amplification in human cancer cells, and have been proposed to be an initiating event in high-copy gene amplification. We have found that spontaneous telomere loss on a marker chromosome 16 in a human tumor cell line results in sister chromatid fusion and prolonged periods of chromosome instability. The high rate of anaphase bridges involving chromosome 16 demonstrates that this instability results from B/F/B cycles. The amplification of subtelomeric DNA on the marker chromosome provides conclusive evidence that B/F/B cycles initiated by spontaneous telomere loss are a mechanism for gene amplification in human cancer cells.
基因组不稳定的发展是产生癌症所需多种基因变化的重要一步。基因组不稳定的一个后果是由于基因扩增导致癌基因的过表达。基因扩增的一种机制是断裂/融合/桥接(B/F/B)循环,它涉及端粒丢失后染色体的反复融合和断裂。B/F/B循环与人类癌细胞中的低拷贝基因扩增有关,并被认为是高拷贝基因扩增的起始事件。我们发现,人类肿瘤细胞系中16号标记染色体上的自发端粒丢失会导致姐妹染色单体融合和染色体不稳定的延长。涉及16号染色体的后期桥接率很高,表明这种不稳定性是由B/F/B循环引起的。标记染色体上亚端粒DNA的扩增提供了确凿的证据,表明由自发端粒丢失引发的B/F/B循环是人类癌细胞中基因扩增的一种机制。