Romeijn Ron J, Gorski Marcin M, van Schie Martijn A, Noordermeer Jasprina N, Mullenders Leon H, Ferro Wouter, Pastink Albert
Department of Toxicogenetics, Leiden University Medical Center (LUMC), 2333 AL, Leiden, The Netherlands.
Genetics. 2005 Feb;169(2):795-806. doi: 10.1534/genetics.104.033464. Epub 2004 Nov 15.
Site-specific double-strand breaks (DSBs) were generated in the white gene located on the X chromosome of Drosophila by excision of the w(hd) P-element. To investigate the role of nonhomologous end joining (NHEJ) and homologous recombination (HR) in the repair of these breaks, the w(hd) P-element was mobilized in flies carrying mutant alleles of either lig4 or rad54. The survival of both lig4- and rad54-deficient males was reduced to 25% in comparison to the wild type, indicating that both NHEJ and HR are involved in the repair P-induced gaps in males. Survival of lig4-deficient females was not affected at all, implying that HR using the homologous chromosome as a template can partially compensate for the impaired NHEJ pathway. In rad54 mutant females survival was reduced to 70% after w(hd) excision. PCR analysis indicated that the undamaged homologous chromosome may compensate for the potential loss of the broken chromosome in rad54 mutant females after excision. Molecular analysis of the repair junctions revealed microhomology (2-8 bp)-dependent DSB repair in most products. In the absence of Lig4, the 8-bp target site duplication is used more frequently for repair. Our data indicate the presence of efficient alternative end-joining mechanisms, which partly depend on the presence of microhomology but do not require Lig4.
通过切除w(hd)P因子,在果蝇X染色体上的白色基因中产生位点特异性双链断裂(DSB)。为了研究非同源末端连接(NHEJ)和同源重组(HR)在这些断裂修复中的作用,在携带lig4或rad54突变等位基因的果蝇中激活w(hd)P因子。与野生型相比,lig4缺陷型和rad54缺陷型雄性的存活率均降至25%,这表明NHEJ和HR都参与了修复P因子诱导的雄性果蝇中的缺口。lig4缺陷型雌性的存活率完全不受影响,这意味着以同源染色体为模板的HR可以部分补偿受损的NHEJ途径。在w(hd)切除后,rad54突变型雌性的存活率降至70%。PCR分析表明,在切除后,未受损的同源染色体可能补偿rad54突变型雌性中断裂染色体的潜在损失。对修复连接点的分子分析显示,大多数产物中存在微同源性(2 - 8个碱基对)依赖的DSB修复。在缺乏Lig4的情况下,8个碱基对的靶位点重复更频繁地用于修复。我们的数据表明存在有效的替代末端连接机制,其部分依赖于微同源性的存在,但不需要Lig4。