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首页> 外文期刊>The Journal of biological chemistry >Genetic and Biochemical Analysis of High Iron Toxicity in Yeast
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Genetic and Biochemical Analysis of High Iron Toxicity in Yeast

机译:酵母中高铁毒性的遗传与生化分析

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Iron storage in yeast requires the activity of the vacuolar iron transporter Ccc1. Yeast with an intact CCC1 are resistant to iron toxicity, but deletion of CCC1 renders yeast susceptible to iron toxicity. We used genetic and biochemical analysis to identify suppressors of high iron toxicity in Δccc1 cells to probe the mechanism of high iron toxicity. All genes identified as suppressors of high iron toxicity in aerobically grown Δccc1 cells encode organelle iron transporters including mitochondrial iron transporters MRS3, MRS4, and RIM2. Overexpression of MRS3 suppressed high iron toxicity by decreasing cytosolic iron through mitochondrial iron accumulation. Under anaerobic conditions, Δccc1 cells were still sensitive to high iron toxicity, but overexpression of MRS3 did not suppress iron toxicity and did not result in mitochondrial iron accumulation. We conclude that Mrs3/Mrs4 can sequester iron within mitochondria under aerobic conditions but not anaerobic conditions. We show that iron toxicity in Δccc1 cells occurred under both aerobic and anaerobic conditions. Microarray analysis showed no evidence of oxidative damage under anaerobic conditions, suggesting that iron toxicity may not be solely due to oxidative damage. Deletion of TSA1, which encodes a peroxiredoxin, exacerbated iron toxicity in Δccc1 cells under both aerobic and anaerobic conditions, suggesting a unique role for Tsa1 in iron toxicity.
机译:酵母中的铁储存需要真空铁转运蛋白CCC1的活性。具有完整的CCC1的酵母对铁毒性有抵抗力,但缺失CCC1酵母易受铁毒性的影响。我们使用遗传和生化分析来识别ΔCC1细胞中高铁毒性的抑制剂,探讨高铁毒性的机制。鉴定为氧气生长ΔCC1细胞高铁毒性抑制剂的所有基因编码细胞石铁运输器,包括线粒体铁转运蛋白MRS3,MRS4和RIM2。通过线粒体铁积累降低细胞溶质铁,MRS3的过表达抑制了高铁毒性。在厌氧条件下,ΔCC1细胞对高铁毒性仍敏感,但MRS3的过度表达抑制了铁毒性,并没有导致线粒体的铁积累。我们得出结论,MRS3 / MRS4在有氧条件下的线粒体内可以在线粒体内隔离铁,但不是厌氧条件。我们表明ΔCC1细胞中的铁毒性在有氧和厌氧条件下发生。微阵列分析显示厌氧条件下的氧化损伤的证据表明,毒性毒性可能不仅是由于氧化损伤。在有氧和厌氧条件下,编码过氧化毒素的TSA1,其编码过氧化毒素,在ΔCCC1细胞中加剧了铁毒性,表明TSA1在铁毒性中的独特作用。

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