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Mitochondrial ferritin limits oxidative damage regulating mitochondrial iron availability: hypothesis for a protective role in Friedreich ataxia

机译:线粒体铁蛋白限制氧化损伤调节线粒体铁的可用性:Friedreich共济失调起保护作用的假说

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摘要

Mitochondrial ferritin (FtMt) is a nuclear-encoded iron-sequestering protein that specifically localizes in mitochondria. In mice it is highly expressed in cells characterized by high-energy consumption, while is undetectable in iron storage tissues like liver and spleen. FtMt expression in mammalian cells was shown to cause a shift of iron from cytosol to mitochondria, and in yeast it rescued the defects associated with frataxin deficiency. To study the role of FtMt in oxidative damage, we analyzed the effect of its expression in HeLa cells after incubation with H2O2 and Antimycin A, and after a long-term growth in glucose-free media that enhances mitochondrial respiratory activity. FtMt reduced the level of reactive oxygen species (ROS), increased the level of adenosine 5'triphosphate and the activity of mitochondrial Fe-S enzymes, and had a positive effect on cell viability. Furthermore, FtMt expression reduces the size of cytosolic and mitochondrial labile iron pools. In cells grown in glucose-free media, FtMt level was reduced owing to faster degradation rate, however it still protected the activity of mitochondrial Fe-S enzymes without affecting the cytosolic iron status. In addition, FtMt expression in fibroblasts from Friedreich ataxia (FRDA) patients prevented the formation of ROS and partially rescued the impaired activity of mitochondrial Fe-S enzymes, caused by frataxin deficiency. These results indicate that the primary function of FtMt involves the control of ROS formation through the regulation of mitochondrial iron availability. They are consistent with the expression pattern of FtMt observed in mouse tissues, suggesting a FtMt protective role in cells characterized by defective iron homeostasis and respiration, such as in FRDA.
机译:线粒体铁蛋白(FtMt)是一种核编码的铁螯合蛋白,专门位于线粒体中。在小鼠中,它在以高能量消耗为特征的细胞中高表达,而在肝和脾等铁存储组织中则无法检测到。 FtMt在哺乳动物细胞中的表达可引起铁从胞质溶胶向线粒体的转移,在酵母中,FtMt可以挽救与frataxin缺乏症相关的缺陷。为了研究FtMt在氧化损伤中的作用,我们分析了在与H2O2和抗霉素A孵育后以及在增强线粒体呼吸活性的无葡萄糖培养基中长期生长后,其在HeLa细胞中表达的影响。 FtMt降低了活性氧(ROS)的水平,增加了5'三磷酸腺苷的水平和线粒体Fe-S酶的活性,并对细胞活力产生了积极影响。此外,FtMt表达减少了胞质和线粒体不稳定铁库的大小。在无葡萄糖培养基中生长的细胞中,由于更快的降解速度而降低了FtMt的水平,但是它仍然可以保护线粒体Fe-S酶的活性,而不会影响胞质铁的状态。另外,Friedreich共济失调(FRDA)患者的成纤维细胞中FtMt的表达阻止了ROS的形成,并部分挽救了由frataxin缺乏引起的线粒体Fe-S酶活性受损。这些结果表明FtMt的主要功能涉及通过调节线粒体铁的有效性来控制ROS的形成。它们与在小鼠组织中观察到的FtMt的表达模式一致,表明FtMt在以铁稳态和呼吸缺陷为特征的细胞中(例如在FRDA中)具有保护作用。

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