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Polyamine deficiency leads to accumulation of reactive oxygen species in a spe2Delta mutant of Saccharomyces cerevisiae

机译:多胺缺乏导致酿酒酵母的spe2Delta突变体中活性氧的积累

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摘要

We have previously shown that polyamine-deficient Saccharomyces cerevisiae are very sensitive to incubation in oxygen. The current studies show that, even under more physiological conditions (i.e. growth in air), polyamine-deficient cells accumulate reactive oxygen species (ROS). These cells develop an apoptotic phenotype and, after incubation in polyamine-deficient medium, die. To show a specific effect of polyamines on ROS accumulation, uncomplicated by any effects on growth, spermine was added to spermidine-deficient spe2Delta fms1Delta cells, since spermine does not affect the growth of this strain. In this strain, spermine addition caused a marked, but not complete, decrease in the accumulation of ROS and a moderate protection against cell death. In other experiments with polyamine-deficient cells containing plasmids that overexpress superoxide dismutases (SOD1, SOD2), ROS decreased but with only a partial protection against cell death. Polyamine-deficient cells incubated anaerobically show markedly less cell death. These data show that part of the function of polyamines is protection of the cells from accumulation of ROS. Copyright (c) 2006 John Wiley & Sons, Ltd.
机译:先前我们已经证明缺乏多胺的酿酒酵母对在氧气中孵育非常敏感。当前的研究表明,即使在更多的生理条件下(即在空气中生长),多胺缺乏细胞也会积累活性氧(ROS)。这些细胞形成凋亡表型,并在缺乏多胺的培养基中孵育后死亡。为了显示多胺对ROS积累的特定作用,而对生长没有任何影响,因此将精胺添加到亚精胺缺乏的spe2Delta fms1Delta细胞中,因为精胺不会影响该菌株的生长。在该菌株中,添加精胺可导致ROS积累显着(但不完全)减少,并能适度保护细胞免受死亡。在含有多表达超氧化物歧化酶(SOD1,SOD2)的质粒的多胺缺陷细胞的其他实验中,ROS降低了,但仅对细胞死亡提供了部分保护。缺氧培养的多胺缺陷细胞显示出明显更少的细胞死亡。这些数据表明,多胺的部分功能是保护细胞免受ROS的积累。版权所有(c)2006 John Wiley&Sons,Ltd.

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