Laboratory of Radiobiology & Experimental Radiation Oncology, Department of Radiotherapy and Radiation Oncology, University Medical School Hamburg-Eppendorf, Martinistrasse 52, D-20246 Hamburg, Germany.
Nucleic Acids Res. 2010 Oct;38(18):6065-77. doi: 10.1093/nar/gkq387. Epub 2010 May 18.
Non-homologous end-joining (NHEJ), the major repair pathway for DNA double-strand breaks (DSB) in mammalian cells, employs a repertoire of core proteins, the recruitment of which to DSB-ends is Ku-dependent. Lack of either of the core components invariably leads to a repair deficiency. There has been evidence that an alternative end-joining operates in the absence of the core components. We used chromosomal reporter substrates to specifically monitor NHEJ of single I-SceI-induced-DSB for detailed comparison of classical and alternative end-joining. We show that rapid repair of both compatible and non-compatible ends require Ku-protein. In the absence of Ku, cells use a slow but efficient repair mode which experiences increasing sequence-loss with time after DSB induction. Chemical inhibition and PARP1-depletion demonstrated that the alternative end-joining in vivo is completely dependent upon functional PARP1. Furthermore, we show that the requirement for PARP1 depends on the absence of Ku but not on DNA-dependent protein kinase (DNA-PKcs). Extensive sequencing of repair junctions revealed that the alternative rejoining does not require long microhomologies. Together, we show that mammalian cells need Ku for rapid and conservative NHEJ. PARP1-dependent alternative route may partially rescue the deficient repair phenotype presumably at the expense of an enhanced mutation rate.
非同源末端连接(NHEJ)是哺乳动物细胞中 DNA 双链断裂(DSB)的主要修复途径,它采用了一系列核心蛋白,这些核心蛋白的募集依赖于 Ku。缺乏任何一个核心组件都会导致修复缺陷。有证据表明,在缺乏核心组件的情况下,会出现另一种末端连接方式。我们使用染色体报告底物,专门监测单个 I-SceI 诱导的 DSB 的 NHEJ,以详细比较经典和替代末端连接。我们表明,快速修复兼容和不兼容的末端都需要 Ku 蛋白。在 Ku 缺失的情况下,细胞使用一种缓慢但有效的修复模式,在 DSB 诱导后,随着时间的推移,这种修复模式会导致越来越多的序列丢失。化学抑制和 PARP1 耗竭表明,体内的替代末端连接完全依赖于功能性 PARP1。此外,我们表明,对 PARP1 的需求取决于 Ku 的缺失,而不是 DNA 依赖性蛋白激酶(DNA-PKcs)的缺失。修复连接点的广泛测序表明,替代连接不需要长微同源性。总之,我们表明哺乳动物细胞需要 Ku 来实现快速和保守的 NHEJ。PARP1 依赖性的替代途径可能部分挽救了缺陷修复表型,大概是以增加突变率为代价的。