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Mrs3p、Mrs4p和铁调素为线粒体中Fe-S簇的合成提供铁。

Mrs3p, Mrs4p, and frataxin provide iron for Fe-S cluster synthesis in mitochondria.

作者信息

Zhang Yan, Lyver Elise R, Knight Simon A B, Pain Debkumar, Lesuisse Emmanuel, Dancis Andrew

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. 2006 Aug 11;281(32):22493-502. doi: 10.1074/jbc.M604246200. Epub 2006 Jun 12.

Abstract

Yeast Mrs3p and Mrs4p are evolutionarily conserved mitochondrial carrier proteins that transport iron into mitochondria under some conditions. Yeast frataxin (Yfh1p), the homolog of the human protein implicated in Friedreich ataxia, is involved in iron homeostasis. However, its precise functions are controversial. Anaerobically grown triple mutant cells (Deltamrs3/4/Deltayfh1) displayed a severe growth defect corrected by in vivo iron supplementation. Because anaerobically grown cells do not synthesize heme, and they do not experience oxidative stress, this growth defect was most likely due to Fe-S cluster deficiency. Fe-S cluster formation was assessed in anaerobically grown cells shifted to air for a brief period. In isolated mitochondria, Fe-S clusters were detected on newly imported yeast ferredoxin precursor and on endogenous aconitase by means of [35S]cysteine labeling and native gel separation. New cluster formation was dependent on iron addition to mitochondria, and the iron concentration dependence was shifted dramatically upward in the Deltamrs3/4 mutant, indicating a role of Mrs3/4p in iron transport. The frataxin mutant strain lacked protein import capacity because of low mitochondrial membrane potential, although this was partially restored by growth in the presence of high iron. Under these conditions, a kinetic defect in new Fe-S cluster formation was still noted. Import of frataxin into frataxin-minus isolated mitochondria promptly corrected the Fe-S cluster assembly defect without further iron addition. These findings show that Mrs3/4p transports iron into mitochondria, whereas frataxin makes iron already within mitochondria available for Fe-S cluster synthesis.

摘要

酵母中的Mrs3p和Mrs4p是进化上保守的线粒体载体蛋白,在某些条件下能将铁转运到线粒体中。酵母中的frataxin(Yfh1p)是与人类弗里德赖希共济失调相关蛋白的同源物,参与铁稳态。然而,其确切功能存在争议。厌氧生长的三重突变细胞(Deltamrs3/4/Deltayfh1)表现出严重的生长缺陷,通过体内补充铁得以纠正。由于厌氧生长的细胞不合成血红素,也不经历氧化应激,这种生长缺陷很可能是由于铁硫簇缺乏所致。在短暂转移到空气中的厌氧生长细胞中评估了铁硫簇的形成。在分离的线粒体中,通过[35S]半胱氨酸标记和天然凝胶分离,在新导入的酵母铁氧还蛋白前体和内源性乌头酸酶上检测到了铁硫簇。新簇的形成依赖于向线粒体中添加铁,并且在Deltamrs3/4突变体中,铁浓度依赖性显著上移,表明Mrs3/4p在铁转运中起作用。由于线粒体膜电位低,frataxin突变株缺乏蛋白质导入能力,尽管在高铁存在下生长可部分恢复。在这些条件下,仍注意到新的铁硫簇形成存在动力学缺陷。将frataxin导入缺失frataxin的分离线粒体中,无需进一步添加铁即可迅速纠正铁硫簇组装缺陷。这些发现表明,Mrs3/4p将铁转运到线粒体中,而frataxin使线粒体内已有的铁可用于铁硫簇合成。

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