Departament de Ciències Mèdiques Bàsiques, IRBLleida, Universitat de Lleida, Lleida, Spain.
Departament de Ciències Mèdiques Bàsiques, IRBLleida, Universitat de Lleida, Lleida, Spain.
Redox Biol. 2018 Apr;14:131-141. doi: 10.1016/j.redox.2017.09.001. Epub 2017 Sep 6.
Yeast frataxin homolog (Yfh1) is the orthologue of human frataxin, a mitochondrial protein whose deficiency causes Friedreich Ataxia. Yfh1 deficiency activates Aft1, a transcription factor governing iron homeostasis in yeast cells. Although the mechanisms causing this activation are not completely understood, it is assumed that it may be caused by iron-sulfur deficiency. However, several evidences indicate that activation of Aft1 occurs in the absence of iron-sulfur deficiency. Besides, Yfh1 deficiency also leads to metabolic remodeling (mainly consisting in a shift from respiratory to fermentative metabolism) and to induction of Yhb1, a nitric oxide (NO) detoxifying enzyme. In this work, we have used conditional Yfh1 mutant yeast strains to investigate the relationship between NO, Aft1 activation and metabolic remodeling. We have observed that NO prevents Aft1 activation caused by Yfh1 deficiency. This phenomenon is not observed when Aft1 is activated by iron scarcity or impaired iron-sulfur biogenesis. In addition, analyzing key metabolic proteins by a targeted proteomics approach, we have observed that NO prevents the metabolic remodeling caused by Yfh1 deficiency. We conclude that Aft1 activation in Yfh1-deficient yeasts is not caused by iron-sulfur deficiency or iron scarcity. Our hypothesis is that Yfh1 deficiency leads to the presence of anomalous iron species that can compromise iron bioavailability and activate a signaling cascade that results in Aft1 activation and metabolic remodeling.
酵母 frataxin 同源物(Yfh1)是人类 frataxin 的同源物,frataxin 是一种线粒体蛋白,其缺乏会导致弗里德里希共济失调。Yfh1 缺乏会激活 Aft1,Aft1 是一种调节酵母细胞铁平衡的转录因子。尽管导致这种激活的机制尚未完全理解,但人们认为这可能是由于铁硫缺乏引起的。然而,有几项证据表明,Aft1 的激活发生在没有铁硫缺乏的情况下。此外,Yfh1 缺乏还会导致代谢重塑(主要表现为从呼吸作用向发酵代谢的转变)和诱导一氧化氮(NO)解毒酶 Yhb1 的表达。在这项工作中,我们使用条件性 Yfh1 突变酵母菌株来研究 NO、Aft1 激活和代谢重塑之间的关系。我们观察到,NO 可以阻止 Yfh1 缺乏引起的 Aft1 激活。当 Aft1 被铁缺乏或铁硫生物合成受损激活时,不会观察到这种现象。此外,通过靶向蛋白质组学方法分析关键代谢蛋白,我们观察到 NO 可以阻止 Yfh1 缺乏引起的代谢重塑。我们得出结论,Yfh1 缺陷酵母中 Aft1 的激活不是由铁硫缺乏或铁缺乏引起的。我们的假设是,Yfh1 缺乏会导致异常铁物种的存在,这些铁物种可能会影响铁的生物利用度,并激活导致 Aft1 激活和代谢重塑的信号级联反应。