Institut Jacques Monod, CNRS-University Paris Diderot 75205 Paris cedex 13, France.
J Biol Chem. 2011 Feb 25;286(8):6071-9. doi: 10.1074/jbc.M110.163253. Epub 2010 Dec 28.
Saccharomyces cerevisiae cells lacking the yeast frataxin homologue (Δyfh1) accumulate iron in the mitochondria in the form of nanoparticles of ferric phosphate. The phosphate content of Δyfh1 mitochondria was higher than that of wild-type mitochondria, but the proportion of mitochondrial phosphate that was soluble was much lower in Δyfh1 cells. The rates of phosphate and iron uptake in vitro by isolated mitochondria were higher for Δyfh1 than wild-type mitochondria, and a significant proportion of the phosphate and iron rapidly became insoluble in the mitochondrial matrix, suggesting co-precipitation of these species after oxidation of iron by oxygen. Increasing the amount of phosphate in the medium decreased the amount of iron accumulated by Δyfh1 cells and improved their growth in an iron-dependent manner, and this effect was mostly transcriptional. Overexpressing the major mitochondrial phosphate carrier, MIR1, slightly increased the concentration of soluble mitochondrial phosphate and significantly improved various mitochondrial functions (cytochromes, [Fe-S] clusters, and respiration) in Δyfh1 cells. We conclude that in Δyfh1 cells, soluble phosphate is limiting, due to its co-precipitation with iron.
酿酒酵母细胞缺乏酵母 frataxin 同源物(Δyfh1),以磷酸铁纳米颗粒的形式在线粒体中积累铁。Δyfh1 线粒体的磷酸盐含量高于野生型线粒体,但Δyfh1 细胞中线粒体磷酸盐的可溶性比例要低得多。分离的线粒体体外摄取磷酸盐和铁的速度在Δyfh1 中比野生型线粒体高,并且大量的磷酸盐和铁在铁被氧氧化后迅速变得不溶,表明这些物质在氧化后共沉淀。增加培养基中的磷酸盐含量会减少Δyfh1 细胞积累的铁量,并以铁依赖性的方式改善其生长,这种作用主要是转录的。过量表达主要的线粒体磷酸盐载体 MIR1 会略微增加可溶性线粒体磷酸盐的浓度,并显著改善Δyfh1 细胞中的各种线粒体功能(细胞色素、[Fe-S]簇和呼吸作用)。我们得出结论,在Δyfh1 细胞中,由于与铁共沉淀,可溶性磷酸盐是有限的。