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Soybean Ferritin Expression in Saccharomyces cerevisiae Modulates Iron Accumulation and Resistance to Elevated Iron Concentrations

机译:酿酒酵母中的大豆铁蛋白表达调节铁积累和对铁浓度的抵抗

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Fungi, including the yeast Saccharomyces cerevisiae , lack ferritin and use vacuoles as iron storage organelles. This work explored how plant ferritin expression influenced baker's yeast iron metabolism. Soybean seed ferritin H1 (SFerH1) and SFerH2 genes were cloned and expressed in yeast cells. Both soybean ferritins assembled as multimeric complexes, which bound yeast intracellular iron in vivo and, consequently, induced the activation of the genes expressed during iron scarcity. Soybean ferritin protected yeast cells that lacked the Ccc1 vacuolar iron detoxification transporter from toxic iron levels by reducing cellular oxidation, thus allowing growth at high iron concentrations. Interestingly, when simultaneously expressed in ccc1 Δ cells, SFerH1 and SFerH2 assembled as heteropolymers, which further increased iron resistance and reduced the oxidative stress produced by excess iron compared to ferritin homopolymer complexes. Finally, soybean ferritin expression led to increased iron accumulation in both wild-type and ccc1 Δ yeast cells at certain environmental iron concentrations.IMPORTANCE Iron deficiency is a worldwide nutritional disorder to which women and children are especially vulnerable. A common strategy to combat iron deficiency consists of dietary supplementation with inorganic iron salts, whose bioavailability is very low. Iron-enriched yeasts and cereals are alternative strategies to diminish iron deficiency. Animals and plants possess large ferritin complexes that accumulate, detoxify, or buffer excess cellular iron. However, the yeast Saccharomyces cerevisiae lacks ferritin and uses vacuoles as iron storage organelles. Here, we explored how soybean ferritin expression influenced yeast iron metabolism, confirming that yeasts that express soybean seed ferritin could be explored as a novel strategy to increase dietary iron absorption.
机译:真菌,包括啤酒酵母,缺乏铁蛋白,并利用液泡作为铁存储细胞器。这项工作探索了植物铁蛋白表达如何影响面包酵母的铁代谢。大豆种子铁蛋白H1(SFerH1)和SFerH2基因被克隆并在酵母细胞中表达。两种大豆铁蛋白组装成多聚体复合物,它们在体内结合酵母细胞内的铁,因此诱导了铁缺乏期间表达的基因的激活。大豆铁蛋白可通过减少细胞氧化来保护缺乏Ccc1液泡铁解毒转运蛋白的酵母细胞免受有毒铁水平的侵害,从而允许其在高铁浓度下生长。有趣的是,当同时在ccc1Δ细胞中表达时,SFerH1和SFerH2组装成杂聚物,与铁蛋白均聚物复合物相比,进一步提高了铁的抗性并降低了过量铁产生的氧化应激。最后,在一定环境铁浓度下,大豆铁蛋白的表达导致野生型和ccc1Δ酵母细胞中铁的积累增加。重要信息铁缺乏是一种全球性的营养失调,妇女和儿童特别容易受到影响。对抗铁缺乏症的常见策略是饮食中添加无机铁盐,其生物利​​用度非常低。富含铁的酵母和谷物是减少铁缺乏的替代策略。动植物拥有大量铁蛋白复合物,它们会积聚,解毒或缓冲多余的细胞铁。然而,酵母酿酒酵母缺乏铁蛋白,并利用液泡作为铁存储细胞器。在这里,我们探讨了大豆铁蛋白表达如何影响酵母铁代谢,从而证实表达大豆种子铁蛋白的酵母可以作为增加饮食中铁吸收的一种新策略进行探索。

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