Wong Chi-Ming, Zhou Yuan, Ng Raymond W M, Kung Hf Hsiang-fu, Jin Dong-Yan
Institute of Molecular Biology, The University of Hong Kong, Pokfulam Rd., Hong Kong, China.
J Biol Chem. 2002 Feb 15;277(7):5385-94. doi: 10.1074/jbc.M106846200. Epub 2001 Dec 10.
Peroxiredoxins are a family of antioxidant enzymes conserved from bacteria to humans. In Saccharomyces cerevisiae, there exist five peroxiredoxins, among which Tsa2p shares striking homology with the well described Tsa1p but has not been extensively studied. Here we report on the functional characterization of yeast tsa2Delta mutants and the comparison of TSA1 with TSA2. The tsa2Delta and tsa1Delta tsa2Delta cells grew normally under aerobic conditions. However, the tsa1Delta tsa2Delta mutant yeast was more susceptible to oxidants than either tsa1Delta or tsa2Delta cells. Notably, the tsa1Delta tsa2Delta yeast was also hypersensitive to peroxynitrite and sodium nitroprusside. This phenotype was rescued by the expression of either the TSA1 or TSA2 gene. The demonstration of a peroxynitrite reductase activity of Tsa2p in vitro points to a pivotal role for peroxiredoxins in the protection against nitrosative stress. In yeast cells, Tsa1p and Tsa2p exhibited comparable antioxidant activity. While the basal expression level of TSA1 was significantly higher than that of TSA2, the transcription of TSA2 was stimulated more potently by various oxidants. In addition, TSA2 was activated in tsa1Delta cells in a Yap1p-dependent manner. Taken together, our findings implicate the cooperation of Tsa1p and Tsa2p in the cellular defense against reactive oxygen and nitrogen species.
过氧化物酶是一类从细菌到人类都保守的抗氧化酶家族。在酿酒酵母中,存在五种过氧化物酶,其中Tsa2p与已被充分描述的Tsa1p具有显著的同源性,但尚未得到广泛研究。在此,我们报告酵母tsa2Δ突变体的功能特性以及TSA1与TSA2的比较。tsa2Δ和tsa1Δ tsa2Δ细胞在有氧条件下正常生长。然而,tsa1Δ tsa2Δ突变体酵母比tsa1Δ或tsa2Δ细胞对氧化剂更敏感。值得注意的是,tsa1Δ tsa2Δ酵母对过氧亚硝酸根和硝普钠也高度敏感。通过表达TSA1或TSA2基因可挽救此表型。体外证明Tsa2p具有过氧亚硝酸根还原酶活性,这表明过氧化物酶在抵抗亚硝化应激中起关键作用。在酵母细胞中,Tsa1p和Tsa2p表现出相当的抗氧化活性。虽然TSA1的基础表达水平显著高于TSA2,但TSA2的转录受各种氧化剂的刺激更强。此外,TSA2在tsa1Δ细胞中以Yap1p依赖的方式被激活。综上所述,我们的研究结果表明Tsa1p和Tsa2p在细胞防御活性氧和氮物种中存在合作。