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酵母线粒体中维持铁稳态所需的肾上腺皮质铁氧化还原蛋白还原酶同源物(Arh1p)。

Adrenodoxin reductase homolog (Arh1p) of yeast mitochondria required for iron homeostasis.

作者信息

Li J, Saxena S, Pain D, Dancis A

机构信息

Department of Medicine, Division of Hematology-Oncology, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Biol Chem. 2001 Jan 12;276(2):1503-9. doi: 10.1074/jbc.M007198200.

Abstract

Arh1p is an essential mitochondrial protein of yeast with reductase activity. Here we show that this protein is involved in iron metabolism. A yeast strain was constructed in which the open reading frame was placed under the control of a galactose-regulated promoter. Protein expression was induced by galactose and repressed to undetectable levels in the absence of galactose, although cells grew quite well in the absence of inducer. Under noninducing conditions, cellular iron uptake was dysregulated, exhibiting a failure to repress in response to medium iron. Iron trafficking within the cell was also disturbed. Exposure of Arh1p-depleted cells to increasing iron concentrations during growth led to drastic increases in mitochondrial iron, indicating a loss of homeostatic control. Activity of aconitase, a prototype Fe-S protein, was deficient at all concentrations of mitochondrial iron, although the protein level was unaltered. Heme protein deficiencies were exacerbated in the iron-loaded mitochondria, suggesting a toxic side effect of accumulated iron. Finally, a time course correlated the cellular depletion of Arh1p with the coordinated appearance of various mutant phenotypes including dysregulated cellular iron uptake, deficiency of Fe-S protein activities in mitochondria and cytoplasm, and deficiency of hemoproteins. Thus, Arh1p is required for control of cellular and mitochondrial iron levels and for the activities of Fe-S cluster proteins.

摘要

Arh1p是酵母中一种具有还原酶活性的重要线粒体蛋白。在此我们表明该蛋白参与铁代谢。构建了一个酵母菌株,其中开放阅读框置于半乳糖调节启动子的控制之下。蛋白表达由半乳糖诱导,在无半乳糖时被抑制至检测不到的水平,尽管细胞在无诱导剂的情况下生长良好。在非诱导条件下,细胞铁摄取失调,表现为对培养基中铁的反应无法抑制。细胞内的铁运输也受到干扰。在生长过程中,将缺失Arh1p的细胞暴露于不断增加的铁浓度下,导致线粒体铁急剧增加,表明稳态控制丧失。乌头酸酶(一种典型的铁硫蛋白)的活性在所有线粒体铁浓度下均有缺陷,尽管蛋白水平未改变。在铁负荷的线粒体中,血红素蛋白缺陷加剧,表明积累的铁具有毒性副作用。最后,一个时间进程将Arh1p的细胞消耗与各种突变表型的协同出现相关联,这些表型包括细胞铁摄取失调、线粒体和细胞质中铁硫蛋白活性缺陷以及血红素蛋白缺陷。因此,Arh1p是控制细胞和线粒体铁水平以及铁硫簇蛋白活性所必需的。

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