Stellwagen Anne E, Haimberger Zara W, Veatch Joshua R, Gottschling Daniel E
Fred Hutchinson Cancer Research Center, Seattle, Washington 98109, USA.
Genes Dev. 2003 Oct 1;17(19):2384-95. doi: 10.1101/gad.1125903. Epub 2003 Sep 15.
Ku is a conserved DNA end-binding protein that plays various roles at different kinds of DNA ends. At telomeres, Ku is part of the structure that protects the chromosome end, whereas at broken DNA ends, Ku promotes DNA repair as part of the nonhomologous end-joining (NHEJ) pathway. Here, we present evidence of a new role for Ku that impacts both telomere-length maintenance and DNA repair in Saccharomyces cerevisiae. We show that Ku binds TLC1, the RNA component of telomerase. We also describe a novel separation-of-function allele of Ku that is specifically defective in TLC1 binding. In this mutant, telomeres are short and the kinetics of telomere addition are slow, but other Ku-dependent activities, such as chromosome end protection and NHEJ, are unaffected. At low frequency, yeast will use telomerase to heal DNA damage by capping the broken chromosome with telomeric DNA sequences. We show that when Ku's ability to bind TLC1 is disrupted, DNA repair via telomere healing is reduced 10- to 100-fold, and the spectrum of sequences that can acquire a telomere changes. Thus, the interaction between Ku and TLC1 RNA enables telomerase to act at both broken and normal chromosome ends.
Ku是一种保守的DNA末端结合蛋白,在不同类型的DNA末端发挥多种作用。在端粒处,Ku是保护染色体末端结构的一部分,而在断裂的DNA末端,Ku作为非同源末端连接(NHEJ)途径的一部分促进DNA修复。在这里,我们提供了Ku在酿酒酵母中影响端粒长度维持和DNA修复的新作用的证据。我们表明Ku结合端粒酶的RNA成分TLC1。我们还描述了Ku的一种新的功能分离等位基因,它在TLC1结合方面存在特异性缺陷。在这个突变体中,端粒很短,端粒添加的动力学很慢,但其他依赖Ku的活动,如染色体末端保护和NHEJ,不受影响。在低频情况下,酵母会通过用端粒DNA序列覆盖断裂的染色体来利用端粒酶修复DNA损伤。我们表明,当Ku结合TLC1的能力被破坏时,通过端粒修复进行的DNA修复减少了10到100倍,并且能够获得端粒的序列谱发生了变化。因此,Ku与TLC1 RNA之间的相互作用使端粒酶能够在断裂和正常的染色体末端发挥作用。