National Food Research Institute, Ibaraki, Japan.
FEMS Yeast Res. 2010 May;10(3):259-69. doi: 10.1111/j.1567-1364.2010.00608.x. Epub 2010 Jan 13.
EOS1 is required for tolerance to oxidative stress in Saccharomyces cerevisiae; mutants are defective in the gene sensitive to hydrogen peroxide and tolerant to tunicamycin. To clarify the function of Eos1, we screened yeast genomic DNA libraries for heterologous genes that, when overexpressed from a plasmid, can suppress the hydrogen peroxide-sensitive eos1 mutation. We identified one such gene, IZH2, which has previously been reported to be a Zap1-regulated gene. However, the EOS1 and IZH2 genes do not themselves appear to be functionally interchangeable. Double disruption of the EOS1 and IZH2 genes yielded a slow-growth phenotype, suggesting that the two proteins are involved in related cellular processes. DNA microarray analysis revealed decreased expression of Zap1-regulated genes in the eos1-deletion mutant (Deltaeos1). Thus, it is likely that Eos1 is involved in zinc homeostasis.
EOS1 是酿酒酵母耐受氧化应激所必需的;突变体在基因上对过氧化氢敏感,对衣霉素耐受有缺陷。为了阐明 Eos1 的功能,我们从酵母基因组 DNA 文库中筛选了异源基因,这些基因在质粒上过表达时可以抑制过氧化氢敏感的 eos1 突变。我们鉴定了一个这样的基因,IZH2,它以前被报道是 Zap1 调控的基因。然而,EOS1 和 IZH2 基因本身似乎并不具有功能上的可替代性。EOS1 和 IZH2 基因的双缺失导致生长缓慢的表型,表明这两种蛋白质参与相关的细胞过程。DNA 微阵列分析显示,在 eos1 缺失突变体(Deltaeos1)中 Zap1 调控基因的表达降低。因此,Eos1 可能参与锌稳态。