Wu Yun, Kantake Noriko, Sugiyama Tomohiko, Kowalczykowski Stephen C
Sections of Microbiology and of Molecular and Cellular Biology, University of California, Davis, CA 95616-8665, USA.
J Biol Chem. 2008 May 23;283(21):14883-92. doi: 10.1074/jbc.M801097200. Epub 2008 Mar 12.
In Saccharomyces cerevisiae, Rad52 protein plays an essential role in the repair of DNA double-stranded breaks (DSBs). Rad52 and its orthologs possess the unique capacity to anneal single-stranded DNA (ssDNA) complexed with its cognate ssDNA-binding protein, RPA. This annealing activity is used in multiple mechanisms of DSB repair: single-stranded annealing, synthesis-dependent strand annealing, and cross-over formation. Here we report that the S. cerevisiae DNA strand exchange protein, Rad51, prevents Rad52-mediated annealing of complementary ssDNA. Efficient inhibition is ATP-dependent and involves a specific interaction between Rad51 and Rad52. Free Rad51 can limit DNA annealing by Rad52, but the Rad51 nucleoprotein filament is even more effective. We also discovered that the budding yeast Rad52 paralog, Rad59 protein, partially restores Rad52-dependent DNA annealing in the presence of Rad51, suggesting that Rad52 and Rad59 function coordinately to enhance recombinational DNA repair either by directing the processed DSBs to repair by DNA strand annealing or by promoting second end capture to form a double Holliday junction. This regulation of Rad52-mediated annealing suggests a control function for Rad51 in deciding the recombination path taken for a processed DNA break; the ssDNA can be directed to either Rad51-mediated DNA strand invasion or to Rad52-mediated DNA annealing. This channeling determines the nature of the subsequent repair process and is consistent with the observed competition between these pathways in vivo.
在酿酒酵母中,Rad52蛋白在DNA双链断裂(DSB)修复中起着至关重要的作用。Rad52及其直系同源物具有独特的能力,可使与其同源的单链DNA结合蛋白RPA结合的单链DNA(ssDNA)退火。这种退火活性用于DSB修复的多种机制:单链退火、合成依赖链退火和交叉形成。在此我们报告,酿酒酵母DNA链交换蛋白Rad51可阻止Rad52介导的互补ssDNA退火。有效的抑制作用依赖于ATP,且涉及Rad51与Rad52之间的特异性相互作用。游离的Rad51可限制Rad52介导的DNA退火,但Rad51核蛋白丝更有效。我们还发现,出芽酵母Rad52旁系同源物Rad59蛋白在Rad51存在的情况下可部分恢复Rad52依赖的DNA退火,这表明Rad52和Rad59协同发挥作用,通过将加工后的DSB引导至DNA链退火修复或促进第二个末端捕获以形成双Holliday连接来增强重组DNA修复。Rad52介导的退火的这种调节表明,Rad51在决定加工后的DNA断裂所采取的重组途径方面具有控制功能;ssDNA可被引导至Rad51介导的DNA链入侵或Rad52介导的DNA退火。这种导向决定了后续修复过程的性质,并且与体内观察到的这些途径之间的竞争一致。