Department of Biology, Genetics group, Lund University, Lund, Sweden.
Sci Rep. 2017 Aug 18;7(1):8729. doi: 10.1038/s41598-017-08663-x.
Telomere DNA ends with a single-stranded 3' overhang. Long 3' overhangs may cause aberrant DNA damage responses and accelerate telomere attrition, which is associated with cancer and aging, respectively. Genetic studies have indicated several important players in preventing 5' end hyper-resection, yet detailed knowledge about the molecular mechanism in which they act is still lacking. Here, we use an in vitro DNA 5' end protection assay, to study how N. castellii Cdc13 and Rap1 protect against 5' exonucleolytic degradation by λ-exonuclease. The homogeneous telomeric repeat sequence of N. castellii allows us to study their protection ability at exact binding sites relative to the 5' end. We find efficient protection by both Cdc13 and Rap1 when bound close to the 5' end. Notably, Rap1 provides protection when binding dsDNA at a distance from the 5' end. The DNA binding domain of Rap1 is sufficient for 5' end protection, and its wrapping loop region is essential. Intriguingly, Rap1 facilitates protection also when its binding site contains 2 nt of ssDNA, thus spanning across the ds-ss junction. These results highlight a role of Rap1 in 5' end protection and indicate that Cdc13 and Rap1 have complementary roles in maintaining proper 3' overhang length.
端粒 DNA 以单链 3'突出端结尾。长的 3'突出端可能导致异常的 DNA 损伤反应,并加速端粒磨损,这分别与癌症和衰老有关。遗传研究表明,有几个重要的参与者可以防止 5'端过度切割,但关于它们作用的分子机制的详细知识仍然缺乏。在这里,我们使用体外 DNA 5'端保护测定法来研究 N. castellii Cdc13 和 Rap1 如何防止 λ外切核酸酶对 5'外切核酸降解的作用。N. castellii 的同质端粒重复序列使我们能够在相对于 5'端的精确结合位点上研究它们的保护能力。当靠近 5'端结合时,我们发现 Cdc13 和 Rap1 都具有有效的保护作用。值得注意的是,当 Rap1 在远离 5'端的 dsDNA 上结合时,也能提供保护。Rap1 的 DNA 结合结构域足以提供 5'端保护,其缠绕环区域是必需的。有趣的是,当 Rap1 的结合位点包含 2nt 的 ssDNA 时,它也能促进保护作用,从而跨越 ds-ss 连接。这些结果突出了 Rap1 在 5'端保护中的作用,并表明 Cdc13 和 Rap1 在维持适当的 3'突出端长度方面具有互补作用。