Ghodke Indrajeet, Muniyappa K
Department of Biochemistry, Indian Institute of Science, Bangalore 560 012, India.
J Biosci. 2016 Dec;41(4):615-641. doi: 10.1007/s12038-016-9642-9.
In Saccharomyces cerevisiae, the Mre11-Rad50-Xrs2 (MRX) protein complex plays pivotal roles in double-strand break (DSB) repair, replication stress and telomere length maintenance. Another protein linked to DSB repair is Sae2, which regulates MRX persistence at DSBs. However, very little is known about its role in DNA replication stress and repair. Here, we reveal a crucial role for Sae2 in DNA replication stress. We show that different mutant alleles of SAE2 cause hypersensitivity to genotoxic agents, and when combined with Δmre11 or nuclease-defective mre11 mutant alleles, the double mutants are considerably more sensitive suggesting that the sae2 mutations synergize with mre11 mutations. Biochemical studies demonstrate that Sae2 exists as a dimer in solution, associates preferentially with single-stranded and branched DNA structures, exhibits structure-specific endonuclease activity and cleaves these substrates from the 5' end. Furthermore, we show that the nuclease activity is indeed intrinsic to Sae2. Interestingly, sae2G270D protein possesses DNA-binding activity, but lacks detectable nuclease activity. Altogether, our data suggest a direct role for Sae2 nuclease activity in processing of the DNA structures that arise during replication and DNA damage and provide insights into the mechanism underlying Mre11-Sae2-mediated abrogation of replication stressrelated defects in S. cerevisiae.
在酿酒酵母中,Mre11-Rad50-Xrs2(MRX)蛋白复合物在双链断裂(DSB)修复、复制应激和端粒长度维持中发挥关键作用。另一种与DSB修复相关的蛋白是Sae2,它调节MRX在DSB处的持续性。然而,关于其在DNA复制应激和修复中的作用知之甚少。在这里,我们揭示了Sae2在DNA复制应激中的关键作用。我们表明,SAE2的不同突变等位基因对基因毒性剂敏感,并且当与Δmre11或核酸酶缺陷型mre11突变等位基因结合时,双突变体对基因毒性剂更加敏感,这表明sae2突变与mre11突变协同作用。生化研究表明,Sae2在溶液中以二聚体形式存在,优先与单链和分支DNA结构结合,表现出结构特异性核酸内切酶活性,并从5'端切割这些底物。此外,我们表明核酸酶活性确实是Sae2固有的。有趣的是,sae2G270D蛋白具有DNA结合活性,但缺乏可检测的核酸酶活性。总之,我们的数据表明Sae2核酸酶活性在处理复制和DNA损伤过程中出现的DNA结构中起直接作用,并为酿酒酵母中Mre11-Sae2介导的复制应激相关缺陷消除机制提供了见解。