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Frataxin Depletion in Yeast Triggers Up-regulation of Iron Transport Systems before Affecting Iron-Sulfur Enzyme Activities*

机译:酵母中的frataxin消耗会触发铁运输系统的上调,然后才影响铁硫酶的活性*

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摘要

The primary function of frataxin, a mitochondrial protein involved in iron homeostasis, remains controversial. Using a yeast model of conditional expression of the frataxin homologue YFH1, we analyzed the primary effects of YFH1 depletion. The main conclusion unambiguously points to the up-regulation of iron transport systems as a primary effect of YFH1 down-regulation. We observed that inactivation of aconitase, an iron-sulfur enzyme, occurs long after the iron uptake system has been activated. Decreased aconitase activity should be considered part of a group of secondary events promoted by iron overloading, which includes decreased superoxide dismutase activity and increased protein carbonyl formation. Impaired manganese uptake, which contributes to superoxide dismutase deficiency, has also been observed in YFH1-deficient cells. This low manganese content can be attributed to the down-regulation of the metal ion transporter Smf2. Low Smf2 levels were not observed in AFT1/YFH1 double mutants, indicating that high iron levels could be responsible for the Smf2 decline. In summary, the results presented here indicate that decreased iron-sulfur enzyme activities in YFH1-deficient cells are the consequence of the oxidative stress conditions suffered by these cells.
机译:frataxin的主要功能,一种参与铁稳态的线粒体蛋白,仍存在争议。使用条件表达的frataxin同源物YFH1酵母模型,我们分析了YFH1耗竭的主要影响。主要结论明确指出,铁运输系统的上调是YFH1下调的主要作用。我们观察到铁吸收系统被激活后很长时间,乌头酸酶(一种铁硫酶)就会失活。乌头酸酶活性下降应被认为是铁超负荷引起的继发性事件的一部分,其中包括超氧化物歧化酶活性降低和蛋白质羰基形成增加。在缺乏YFH1的细胞中也观察到锰摄取受损,这会导致超氧化物歧化酶缺乏。这种低锰含量可归因于金属离子转运蛋白Smf2的下调。在AFT1 / YFH1双重突变体中未观察到低Smf2水平,这表明高铁水平可能是Smf2下降的原因。总之,此处给出的结果表明,YFH1缺陷型细胞中铁硫酶活性的下降是这些细胞遭受氧化应激条件的结果。

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