Saffi J, Feldmann H, Winnacker E L, Henriques J A
Centro de Biotecnologia and Depto. de Biofísica, UFRGS, Av. Bento Gonçalves, 9500 Prédio, 43421 Campus do Vale, 91501-970, RS, Porto Alegre, Brazil.
Mutat Res. 2001 Aug 9;486(3):195-206. doi: 10.1016/s0921-8777(01)00093-3.
The interaction trap method was used to isolate putative binding partners of Rad16/Pso5, a protein responsible for repair of silent DNA. One of the interactors found was Sgs1, a DNA helicase influencing the life span of Saccharomyces cerevisiae, with homology to the human BLM, WRN and RECQL4 proteins. Using the same fusion proteins from the two-hybrid screening, we show evidence that both proteins also interact in vitro. We tested isogenic strains, containing mutant alleles of the two genes in single and double mutant combination, for phenotypic similarity. Life span in sgs1Delta single and sgs1Delta rad16Delta double mutants is about 40% of that of WT, and the rad16/pso5Delta single mutant also had its life span reduced to 75%. Sensitivity to different mutagens, whose lesions are poorly repaired in rad16/pso5Delta mutants, was tested in sgs1Delta mutants. The sgs1Delta conferred sensitivity to MMS, H2O2 and was moderately sensitive to UV(254nm) (UVC) and 4-NQO. An epistatic interaction between rad16 and sgs1 mutations after UVC, 4-NQO and H2O2 was observed. Moreover, we found that in a top3 background, functional Sgs1p and Rad16p apparently channel MMS, 4-NQO and H2O2 induced lesions into aberrant DNA repair. Our results demonstrate that Sgs1 is not only involved in genome stability, somatic recombination and aging, but is also implicated, together with Rad16/Pso5, in the repair of specific DNA damage.
采用相互作用陷阱法分离负责沉默DNA修复的蛋白质Rad16/Pso5的假定结合伴侣。发现的一个相互作用蛋白是Sgs1,它是一种影响酿酒酵母寿命的DNA解旋酶,与人类的BLM、WRN和RECQL4蛋白具有同源性。利用来自双杂交筛选的相同融合蛋白,我们证明这两种蛋白在体外也相互作用。我们测试了含有两个基因突变的单突变和双突变组合的同基因菌株的表型相似性。sgs1Δ单突变体和sgs1Δ rad16Δ双突变体的寿命约为野生型的40%,而rad16/pso5Δ单突变体的寿命也缩短至75%。在sgs1Δ突变体中测试了对不同诱变剂的敏感性,这些诱变剂的损伤在rad16/pso5Δ突变体中修复不佳。sgs1Δ对甲基磺酸甲酯(MMS)、过氧化氢(H2O2)敏感,对紫外线(254nm)(UVC)和4-硝基喹啉-1-氧化物(4-NQO)中度敏感。观察到紫外线C(UVC)、4-NQO和H2O2处理后rad16和sgs1突变之间的上位性相互作用。此外,我们发现,在top3背景下,功能性的Sgs1p和Rad16p显然将MMS、4-NQO和H2O2诱导的损伤导向异常的DNA修复。我们的结果表明,Sgs1不仅参与基因组稳定性、体细胞重组和衰老,还与Rad16/Pso5一起参与特定DNA损伤的修复。