DuBois Michelle L, Haimberger Zara W, McIntosh Martin W, Gottschling Daniel E
Division of Basic Sciences, Fred Hutchinson Cancer Research Center, 1100 Fairview Avenue, Seattle, WA 98109-1024, USA.
Genetics. 2002 Jul;161(3):995-1013. doi: 10.1093/genetics/161.3.995.
Telomeres are the protective ends of linear chromosomes. Telomeric components have been identified and described by their abilities to bind telomeric DNA, affect telomere repeat length, participate in telomeric DNA replication, or modulate transcriptional silencing of telomere-adjacent genes; however, their roles in chromosome end protection are not as well defined. We have developed a genetic, quantitative assay in Saccharomyces cerevisiae to measure whether various telomeric components protect chromosome ends from homologous recombination. This "chromosomal cap" assay has revealed that the telomeric end-binding proteins, Cdc13p and Ku, both protect the chromosome end from homologous recombination, as does the ATM-related kinase, Tel1p. We propose that Cdc13p and Ku structurally inhibit recombination at telomeres and that Tel1p regulates the chromosomal cap, acting through Cdc13p. Analysis with recombination mutants indicated that telomeric homologous recombination events proceeded by different mechanisms, depending on which capping component was compromised. Furthermore, we found that neither telomere repeat length nor telomeric silencing correlated with chromosomal capping efficiency. This capping assay provides a sensitive in vivo approach for identifying the components of chromosome ends and the mechanisms by which they are protected.
端粒是线性染色体的保护性末端。端粒成分已根据其结合端粒DNA、影响端粒重复序列长度、参与端粒DNA复制或调节端粒邻近基因转录沉默的能力得以鉴定和描述;然而,它们在染色体末端保护中的作用尚未得到明确界定。我们在酿酒酵母中开发了一种遗传学定量分析方法,以测定各种端粒成分是否能保护染色体末端免于同源重组。这种“染色体帽”分析表明,端粒末端结合蛋白Cdc13p和Ku以及与ATM相关的激酶Tel1p均能保护染色体末端免于同源重组。我们提出,Cdc13p和Ku在结构上抑制端粒处的重组,而Tel1p通过Cdc13p调节染色体帽。对重组突变体的分析表明,端粒同源重组事件通过不同机制进行,这取决于哪种帽化成分受到损害。此外,我们发现端粒重复序列长度和端粒沉默均与染色体帽化效率无关。这种帽化分析为鉴定染色体末端成分及其保护机制提供了一种灵敏的体内方法。