Matsuo Ryo, Mizobuchi Shogo, Nakashima Maya, Miki Kensuke, Ayusawa Dai, Fujii Michihiko
Graduate School of Nanobioscience, Yokohama City University, 22-2 Seto, Kanazawa-ku, Yokohama, 236-0027, Japan.
Curr Genet. 2017 Oct;63(5):895-907. doi: 10.1007/s00294-017-0689-4. Epub 2017 Mar 13.
Oxygen is essential for aerobic organisms but causes cytotoxicity probably through the generation of reactive oxygen species (ROS). In this study, we screened for the genes that regulate oxidative stress in the yeast Saccharomyces cerevisiae, and found that expression of CTH2/TIS11 caused an increased resistance to ROS. CTH2 is up-regulated upon iron starvation and functions to remodel metabolism to adapt to iron starvation. We showed here that increased resistance to ROS by CTH2 would likely be caused by the decreased ROS production due to the decreased activity of mitochondrial respiration, which observation is consistent with the fact that CTH2 down-regulates the mitochondrial respiratory proteins. We also found that expression of CTH1, a paralog of CTH2, also caused an increased resistance to ROS. This finding supported the above view, because mitochondrial respiratory proteins are the common targets of CTH1 and CTH2. We further showed that supplementation of iron in medium augmented the growth of S. cerevisiae under oxidative stress, and expression of CTH2 and supplementation of iron collectively enhanced its growth under oxidative stress. Since CTH2 is regulated by iron, these findings suggested that iron played crucial roles in the regulation of oxidative stress in S. cerevisiae.
氧气对于需氧生物至关重要,但可能通过产生活性氧(ROS)导致细胞毒性。在本研究中,我们筛选了酿酒酵母中调节氧化应激的基因,发现CTH2/TIS11的表达导致对ROS的抗性增加。CTH2在铁饥饿时上调,并发挥重塑代谢以适应铁饥饿的功能。我们在此表明,CTH2对ROS抗性的增加可能是由于线粒体呼吸活性降低导致ROS产生减少所致,这一观察结果与CTH2下调线粒体呼吸蛋白的事实一致。我们还发现CTH2的旁系同源物CTH1的表达也导致对ROS的抗性增加。这一发现支持了上述观点,因为线粒体呼吸蛋白是CTH1和CTH2的共同靶点。我们进一步表明,在培养基中补充铁可增强酿酒酵母在氧化应激下的生长,并且CTH2的表达和铁的补充共同增强了其在氧化应激下的生长。由于CTH2受铁调节,这些发现表明铁在酿酒酵母氧化应激的调节中起关键作用。