首页> 外文期刊>International Journal of Molecular Sciences >Different Reactive Oxygen Species Lead to Distinct Changes of Cellular Metal Ions in the Eukaryotic Model Organism Saccharomyces cerevisiae
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Different Reactive Oxygen Species Lead to Distinct Changes of Cellular Metal Ions in the Eukaryotic Model Organism Saccharomyces cerevisiae

机译:真核模型生物酿酒酵母中不同的活性氧导致细胞金属离子的明显变化

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Elemental uptake and export of the cell are tightly regulated thereby maintaining the ionomic homeostasis. This equilibrium can be disrupted upon exposure to exogenous reactive oxygen species (ROS), leading to reduction or elevation of the intracellular metal ions. In this study, the ionomic composition in the eukaryotic model organism Saccharomyces cerevisiae was profiled using the inductively-coupled plasma optical emission spectrometer (ICP-OES) following the treatment with individual ROS, including hydrogen peroxide, cumen hydroperoxide, linoleic acid hydroperoxide (LAH), the superoxide-generating agent menadione, the thiol-oxidising agent diamide [diazine-dicarboxylic acid-bis(dimethylamide)], dimedone and peroxynitrite. The findings demonstrated that different ROS resulted in distinct changes in cellular metal ions. Aluminium (Al3+) level rose up to 50-fold after the diamide treatment. Cellular potassium (K+) in LAH-treated cells was 26-fold less compared to the non-treated controls. The diamide-induced Al3+ accumulation was further validated by the enhanced Al3+ uptake along the time course and diamide doses. Pre-incubation of yeast with individual elements including iron, copper, manganese and magnesium failed to block diamide-induced Al3+ uptake, suggesting Al3+-specific transporters could be involved in Al3+ uptake. Furthermore, LAH-induced potassium depletion was validated by a rescue experiment in which addition of potassium increased yeast growth in LAH-containing media by 26% compared to LAH alone. Taken together, the data, for the first time, demonstrated the linkage between ionomic profiles and individual oxidative conditions.
机译:细胞的元素摄取和输出受到严格调节,从而保持了体内平衡。暴露于外源性活性氧(ROS)后,该平衡可能被破坏,导致细胞内金属离子的减少或升高。在这项研究中,使用单独的ROS(包括过氧化氢,氢过氧化异丙苯,过氧化亚油酸(LAH))处理了单个ROS后,使用电感耦合等离子体发射光谱仪(ICP-OES)对了真核生物酿酒酵母中的生物成分,超氧化物生成剂甲萘醌,硫醇氧化剂二酰胺[二嗪-二羧酸-双(二甲酰胺)],二甲酮和过氧亚硝酸盐。研究结果表明,不同的ROS导致细胞金属离子发生明显变化。二酰胺处理后,铝(Al 3 + )水平上升至50倍。 LAH处理的细胞中的细胞钾(K + )与未处理的对照相比减少了26倍。沿时间过程和二酰胺剂量增加的Al 3 + 摄取进一步证实了二酰胺诱导的Al 3 + 积累。酵母与铁,铜,锰和镁等单个元素的预温育未能阻止双酰胺诱导的Al 3 + 吸收,表明Al 3 + 特异性转运蛋白可能是参与Al 3 + 的吸收。此外,通过救援实验验证了LAH诱导的钾耗竭,与单独的LAH相比,钾的添加使含LAH的培养基中酵母的生长增加了26%。总的来说,这些数据首次证明了ionomic配置文件和各个氧化条件之间的联系。

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