Wu Yun, Sugiyama Tomohiko, Kowalczykowski Stephen C
Section of Microbiology, Center for Genetics and Development, Division of Biological Sciences, University of California, Davis, California 95616-8665, USA.
J Biol Chem. 2006 Jun 2;281(22):15441-9. doi: 10.1074/jbc.M601827200. Epub 2006 Mar 25.
In the budding yeast Saccharomyces cerevisiae, the RAD52 gene is essential for all homologous recombination events and its homologue, the RAD59 gene, is important for those that occur independently of RAD51. Both Rad52 and Rad59 proteins can anneal complementary single-stranded (ss) DNA. We quantitatively examined the ssDNA annealing activity of Rad52 and Rad59 proteins and found significant differences in their biochemical properties. First, and most importantly, they differ in their ability to anneal ssDNA that is complexed with replication protein A (RPA). Rad52 can anneal an RPA-ssDNA complex, but Rad59 cannot. Second, Rad59-promoted DNA annealing follows first-order reaction kinetics, whereas Rad52-promoted annealing follows second-order reaction kinetics. Last, Rad59 enhances Rad52-mediated DNA annealing at increased NaCl concentrations, both in the absence and presence of RPA. These results suggest that Rad59 performs different functions in the recombination process, and should be more accurately viewed as a Rad52 paralogue.
在出芽酵母酿酒酵母中,RAD52基因对于所有同源重组事件都是必需的,其同源物RAD59基因对于那些独立于RAD51发生的同源重组事件很重要。Rad52和Rad59蛋白都能使互补单链(ss)DNA退火。我们定量检测了Rad52和Rad59蛋白的ssDNA退火活性,发现它们的生化特性存在显著差异。首先,也是最重要的,它们在使与复制蛋白A(RPA)结合的ssDNA退火的能力上有所不同。Rad52能使RPA-ssDNA复合物退火,但Rad59不能。其次,Rad59促进的DNA退火遵循一级反应动力学,而Rad52促进的退火遵循二级反应动力学。最后,在不存在和存在RPA的情况下,在增加的NaCl浓度下,Rad59都会增强Rad52介导的DNA退火。这些结果表明,Rad59在重组过程中执行不同的功能,并且应该更准确地被视为Rad52旁系同源物。