Beall E L, Rio D C
Department of Molecular and Cell Biology, University of California, Berkeley, 94720-3204, USA.
Genes Dev. 1996 Apr 15;10(8):921-33. doi: 10.1101/gad.10.8.921.
The P family of transposable elements in Drosophila transpose by a cut-and-paste mechanism involving double-strand gap repair. We report here that a Drosophila mutagen-sensitive mutant, mus3O9, contains a mutation in IRBP (inverted repeat binding protein), the Drosophila homolog of the mammalian Ku p70 gene. We show that the repair of double-strand DNA breaks after P-element excision is severely reduced in mus3O9 mutants using an in vivo assay for P-element transposase activity. In addition, excision products recovered from mus3O9 mutant embryos by use of a plasmid-based P-element mobility assay contain large deletions, suggesting that IRBP is involved in the repair of double-strand DNA breaks. Our findings provide the first demonstration that a mutation in the IRBP gene affects double-strand DNA break repair and suggest that DNA repair functions are conserved between Drosophila and mammals.
果蝇中的P家族转座元件通过涉及双链缺口修复的剪切粘贴机制进行转座。我们在此报告,果蝇诱变敏感突变体mus3O9在IRBP(反向重复结合蛋白)中存在突变,IRBP是哺乳动物Ku p70基因的果蝇同源物。我们利用体内P元件转座酶活性测定法表明,mus3O9突变体中P元件切除后双链DNA断裂的修复严重减少。此外,通过基于质粒的P元件迁移测定法从mus3O9突变体胚胎中回收的切除产物包含大的缺失,这表明IRBP参与双链DNA断裂的修复。我们的发现首次证明了IRBP基因突变会影响双链DNA断裂修复,并表明果蝇和哺乳动物之间的DNA修复功能是保守的。