Capper Rebecca, Britt-Compton Bethan, Tankimanova Maira, Rowson Jan, Letsolo Boitelo, Man Stephen, Haughton Michele, Baird Duncan M
Department of Pathology, School of Medicine, Cardiff University, Heath Park, Cardiff CF14 4XN, United Kingdom.
Genes Dev. 2007 Oct 1;21(19):2495-508. doi: 10.1101/gad.439107.
The loss of telomere function can result in telomeric fusion events that lead to the types of genomic rearrangements, such as nonreciprocal translocations, that typify early-stage carcinogenesis. By using single-molecule approaches to characterize fusion events, we provide a functional definition of fusogenic telomeres in human cells. We show that approximately half of the fusion events contained no canonical telomere repeats at the fusion point; of those that did, the longest was 12.8 repeats. Furthermore, in addition to end-replication losses, human telomeres are subjected to large-scale deletion events that occur in the presence or absence of telomerase. Here we show that these telomeres are fusogenic, and thus despite the majority of telomeres being maintained at a stable length in normal human cells, a subset of stochastically shortened telomeres can potentially cause chromosomal instability. Telomere fusion was accompanied by the deletion of one or both telomeres extending several kilobases into the telomere-adjacent DNA, and microhomology was observed at the fusion points. This contrasted with telomere fusion that was observed following the experimental disruption of TRF2. The distinct error-prone mutational profile of fusion between critically shortened telomeres in human cells was reminiscent of Ku-independent microhomology-mediated end-joining.
端粒功能的丧失会导致端粒融合事件,进而引发基因组重排类型,如非相互易位,这是早期致癌作用的典型特征。通过使用单分子方法来表征融合事件,我们给出了人类细胞中促融合端粒的功能定义。我们发现,大约一半的融合事件在融合点处不包含典型的端粒重复序列;而那些包含典型端粒重复序列的事件中,最长的为12.8个重复序列。此外,除了末端复制损失外,人类端粒还会经历在有或无端粒酶存在的情况下发生的大规模缺失事件。在此我们表明,这些端粒具有促融合性,因此尽管在正常人类细胞中大多数端粒保持稳定长度,但一部分随机缩短的端粒可能会导致染色体不稳定。端粒融合伴随着一个或两个端粒的缺失,这些端粒延伸到端粒相邻DNA中达数千碱基,并且在融合点处观察到微同源性。这与在实验性破坏TRF2后观察到的端粒融合形成对比。人类细胞中严重缩短的端粒之间融合的明显易错突变特征让人联想到不依赖Ku的微同源性介导的末端连接。