Rathmell W K, Chu G
Department of Medicine, Stanford University Medical Center, California 94305.
Mol Cell Biol. 1994 Jul;14(7):4741-8. doi: 10.1128/mcb.14.7.4741-4748.1994.
We have identified a nuclear factor that binds to double-stranded DNA ends, independently of the structure of the ends. It had equivalent affinities for DNA ends created by sonication or by restriction enzymes leaving 5', 3', or blunt ends but had no detectable affinity for single-stranded DNA ends. Since X rays induce DNA double-strand breaks, extracts from several complementation groups of X-ray-sensitive mammalian cells were tested for this DNA end-binding (DEB) activity. DEB activity was deficient in three independently derived cell lines from complementation group 5. Furthermore, when the cell lines reverted to X-ray resistance, expression of the DEB factor was restored to normal levels. Previous studies had shown that group 5 cells are defective for both double-strand break repair and V(D)J recombination. The residual V(D)J recombination activity in these cells produces abnormally large deletions at the sites of DNA joining (F. Pergola, M. Z. Zdzienicka, and M. R. Lieber, Mol. Cell. Biol. 13:3464-3471, 1993, and G. Taccioli, G. Rathbun, E. Oltz, T. Stamato, P. Jeggo, and F. Alt, Science 260:207-210, 1993), consistent with deficiency of a factor that protects DNA ends from degradation. Therefore, DEB factor may be involved in a biochemical pathway common to both double-strand break repair and V(D)J recombination.
我们已经鉴定出一种能与双链DNA末端结合的核因子,该结合与末端结构无关。它对超声处理或限制性内切酶产生的5'、3'或平端的DNA末端具有同等亲和力,但对单链DNA末端没有可检测到的亲和力。由于X射线可诱导DNA双链断裂,因此我们检测了几个对X射线敏感的哺乳动物细胞互补组的提取物的这种DNA末端结合(DEB)活性。来自互补组5的三个独立衍生的细胞系中DEB活性存在缺陷。此外,当这些细胞系恢复对X射线的抗性时,DEB因子的表达恢复到正常水平。先前的研究表明,第5组细胞在双链断裂修复和V(D)J重组方面均存在缺陷。这些细胞中残留的V(D)J重组活性在DNA连接位点产生异常大的缺失(F. Pergola,M. Z. Zdzienicka和M. R. Lieber,《分子细胞生物学》13:3464 - 3471,1993年,以及G. Taccioli,G. Rathbun,E. Oltz,T. Stamato,P. Jeggo和F. Alt,《科学》260:207 - 210,1993年),这与一种保护DNA末端免于降解的因子的缺陷一致。因此,DEB因子可能参与了双链断裂修复和V(D)J重组共有的生化途径。