Sulek M, Yarrington R, McGibbon G, Boeke J D, Junop M
Department of Biochemistry and Biomedical Sciences, HSC 4N59, McMaster University, 1200 Main Street West, Hamilton, Ont. L8N 3Z5, Canada.
DNA Repair (Amst). 2007 Dec 1;6(12):1805-18. doi: 10.1016/j.dnarep.2007.07.009. Epub 2007 Aug 31.
A predominant pathway implicated in repair of DNA double-strand breaks (DSBs) is the evolutionarily conserved non-homologous end-joining (NHEJ) pathway. Among the major constituents of this pathway in Saccharomyces cerevisiae is Nej1p, for which a biochemical function has yet to be determined. In this work we demonstrate that Nej1p exhibits a DNA binding activity (KD approximately 1.8 microM) comparable to Lif1p. Although binding is enhanced with larger substrates (>300 bp), short approximately 20 bp substrates can suffice. This DNA binding activity is the first biochemical evidence supporting the idea that Nej1p plays a direct role in the repair of double-strand breaks. The C-terminus of Nej1p is required for interaction with Lif1p and is sufficient for DNA binding. Structural characterization reveals that Nej1p exists as a dimer, and that residues 1-244 are sufficient for dimer formation. Nej1p (aa 1-244) is shown to be defective in end-joining in vivo. Preliminary functional and structural studies on the Nej1p-Lif1p complex suggest that the proteins stably co-purify and the complex binds DNA with a higher affinity than each independent component. The significance of these results is discussed with reference to current literature on Nej1p and other end-joining factors (mammalian and yeast), specifically the recently identified putative mammalian homologue of Nej1p, XLF/Cernunnos.
参与DNA双链断裂(DSB)修复的一条主要途径是进化上保守的非同源末端连接(NHEJ)途径。酿酒酵母中该途径的主要成分之一是Nej1p,其生化功能尚未确定。在这项工作中,我们证明Nej1p表现出与Lif1p相当的DNA结合活性(解离常数约为1.8微摩尔)。虽然较大的底物(>300碱基对)能增强结合,但短至约20碱基对的底物也足够。这种DNA结合活性是支持Nej1p在双链断裂修复中起直接作用这一观点的首个生化证据。Nej1p的C末端是与Lif1p相互作用所必需的,并且足以进行DNA结合。结构表征显示Nej1p以二聚体形式存在,并且1 - 244位残基足以形成二聚体。已证明Nej1p(第1 - 244位氨基酸)在体内末端连接方面存在缺陷。对Nej1p - Lif1p复合物的初步功能和结构研究表明,这些蛋白质能稳定地共同纯化,并且该复合物比每个独立组分以更高的亲和力结合DNA。我们参考了当前关于Nej1p和其他末端连接因子(哺乳动物和酵母)的文献,特别是最近鉴定出的Nej1p的假定哺乳动物同源物XLF/Cernunnos,讨论了这些结果的意义。