Department of Biochemistry, Molecular Biology, and Biophysics, University of Minnesota Medical School, Minneapolis, MN 55455, USA.
Nucleic Acids Res. 2013 Feb 1;41(3):1734-49. doi: 10.1093/nar/gks1326. Epub 2012 Dec 28.
Classic non-homologous end joining (C-NHEJ) is the predominant DNA double-strand break repair pathway in humans. Although seven genes Ku70, Ku86, DNA-PK(cs), Artemis, DNA Ligase IV (LIGIV), X-ray cross-complementing group 4 and XRCC4-like factor are required for C-NHEJ, several of them also have ancillary functions. For example, Ku70:Ku86 possesses an essential telomere maintenance activity. In contrast, LIGIV is believed to function exclusively in C-NHEJ. Moreover, a viable LIGIV-null human B-cell line and LIGIV-reduced patient cell lines have been described. Together, these observations suggest that LIGIV (and hence C-NHEJ), albeit important, is nonetheless dispensable, whereas Ku70:Ku86 and telomere maintenance are essential. To confirm this hypothesis, we inactivated LIGIV in the epithelial human cell line, HCT116. The resulting LIGIV-null cell line was viable, verifying that the gene and C-NHEJ are not essential. However, functional inactivation of RAD54B, a key homologous recombination factor, in the LIGIV-null background yielded no viable clones, suggesting that the combined absence of RAD54B/homologous recombination and C-NHEJ is synthetically lethal. Finally, we demonstrate that LIGIV is differentially required for certain chromosome fusion events induced by telomere dysfunction-used for those owing to the overexpression of a dominant negative version of telomere recognition factor 2, but not used for those owing to absence of Ku70:Ku86.
经典的非同源末端连接(C-NHEJ)是人类中主要的 DNA 双链断裂修复途径。尽管有七个基因 Ku70、Ku86、DNA-PK(cs)、Artemis、DNA 连接酶 IV (LIGIV)、X 射线交叉互补组 4 和 XRCC4 样因子需要用于 C-NHEJ,但其中几个也具有辅助功能。例如,Ku70:Ku86 具有必需的端粒维持活性。相比之下,LIGIV 被认为仅在 C-NHEJ 中起作用。此外,已经描述了具有存活能力的 LIGIV 缺失的人类 B 细胞系和 LIGIV 减少的患者细胞系。这些观察结果表明,LIGIV(因此 C-NHEJ)虽然重要,但并非不可或缺,而 Ku70:Ku86 和端粒维持则是必不可少的。为了证实这一假设,我们在人上皮细胞系 HCT116 中使 LIGIV 失活。产生的 LIGIV 缺失细胞系具有活力,验证了该基因和 C-NHEJ 不是必需的。然而,在 LIGIV 缺失背景下功能性失活关键同源重组因子 RAD54B 未能产生有活力的克隆,表明 RAD54B/同源重组和 C-NHEJ 的联合缺失是合成致死的。最后,我们证明 LIGIV 对于由端粒功能障碍引起的某些染色体融合事件具有差异需求——这些事件是由于端粒识别因子 2 的显性负版本过表达引起的,但不是由于 Ku70:Ku86 缺失引起的。