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Deficiency in frataxin homologue YFH1 in the yeast Pichia guilliermondii leads to missregulation of iron acquisition and riboflavin biosynthesis and affects sulfate assimilation.酵母毕赤酵母中同源物 YFH1 的缺陷导致铁摄取和核黄素生物合成的失调,并影响硫酸盐同化。
Biometals. 2009 Dec;22(6):1051-61. doi: 10.1007/s10534-009-9256-x.
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Iron use for haeme synthesis is under control of the yeast frataxin homologue (Yfh1).用于血红素合成的铁的利用受酵母铁调素同源物(Yfh1)的控制。
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本文引用的文献

1
Assembly of the iron-binding protein frataxin in Saccharomyces cerevisiae responds to dynamic changes in mitochondrial iron influx and stress level.酿酒酵母中铁结合蛋白酵母frataxin的组装对线粒体铁流入和应激水平的动态变化做出反应。
J Biol Chem. 2008 Nov 14;283(46):31500-10. doi: 10.1074/jbc.M805415200. Epub 2008 Sep 9.
2
Glutathione-dependent redox status of frataxin-deficient cells in a yeast model of Friedreich's ataxia.弗里德赖希共济失调酵母模型中细胞色素铁硫蛋白缺乏细胞的谷胱甘肽依赖性氧化还原状态
Hum Mol Genet. 2008 Sep 15;17(18):2790-802. doi: 10.1093/hmg/ddn178. Epub 2008 Jun 18.
3
Toxicity testing of a novel riboflavin-based technology for pathogen reduction and white blood cell inactivation.一种基于核黄素的新型病原体灭活及白细胞失活技术的毒性测试。
Transfus Med Rev. 2008 Apr;22(2):133-53. doi: 10.1016/j.tmrv.2007.12.003.
4
Role of PUG1 in inducible porphyrin and heme transport in Saccharomyces cerevisiae.PUG1在酿酒酵母中诱导性卟啉和血红素转运中的作用
Eukaryot Cell. 2008 May;7(5):859-71. doi: 10.1128/EC.00414-07. Epub 2008 Mar 7.
5
Shewanella secretes flavins that mediate extracellular electron transfer.希瓦氏菌分泌介导细胞外电子转移的黄素。
Proc Natl Acad Sci U S A. 2008 Mar 11;105(10):3968-73. doi: 10.1073/pnas.0710525105. Epub 2008 Mar 3.
6
Major targets of iron-induced protein oxidative damage in frataxin-deficient yeasts are magnesium-binding proteins.在缺乏酵母铁蛋白的酵母中,铁诱导的蛋白质氧化损伤的主要靶点是镁结合蛋白。
Free Radic Biol Med. 2008 May 1;44(9):1712-23. doi: 10.1016/j.freeradbiomed.2008.01.014. Epub 2008 Jan 30.
7
Response to iron deprivation in Saccharomyces cerevisiae.酿酒酵母对铁缺乏的反应。
Eukaryot Cell. 2008 Jan;7(1):20-7. doi: 10.1128/EC.00354-07. Epub 2007 Nov 9.
8
Mutations and environmental factors affecting regulation of riboflavin synthesis and iron assimilation also cause oxidative stress in the yeast Pichia guilliermondii.影响核黄素合成调控和铁同化的突变及环境因素也会在季也蒙毕赤酵母中引发氧化应激。
J Basic Microbiol. 2007 Oct;47(5):371-7. doi: 10.1002/jobm.200610279.
9
RIBOFLAVIN PRODUCTION BY CANDIDA SPECIES.念珠菌属生产核黄素
Science. 1945 Feb 16;101(2616):180-1. doi: 10.1126/science.101.2616.180.
10
Effects of the deletion of the Escherichia coli frataxin homologue CyaY on the respiratory NADH:ubiquinone oxidoreductase.大肠杆菌铁调素同源物CyaY缺失对呼吸型NADH:泛醌氧化还原酶的影响。
BMC Biochem. 2007 Jul 24;8:13. doi: 10.1186/1471-2091-8-13.

酵母毕赤酵母中同源物 YFH1 的缺陷导致铁摄取和核黄素生物合成的失调,并影响硫酸盐同化。

Deficiency in frataxin homologue YFH1 in the yeast Pichia guilliermondii leads to missregulation of iron acquisition and riboflavin biosynthesis and affects sulfate assimilation.

机构信息

Institute of Cell Biology, NAS of Ukraine, Drahomanov Street 14/16, 79005 Lviv, Ukraine.

出版信息

Biometals. 2009 Dec;22(6):1051-61. doi: 10.1007/s10534-009-9256-x.

DOI:10.1007/s10534-009-9256-x
PMID:19649569
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3428027/
Abstract

Pichia guilliermondii is a representative of yeast species that overproduce riboflavin (vitamin B2) in response to iron deprivation. P. guilliermondii YFH1 gene coding for frataxin homologue, eukaryotic mitochondrial protein involved in iron trafficking and storage, was identified and deleted. Constructed P. guilliermondii Δyfh1 mutant grew very poorly in a sucrose-containing synthetic medium supplemented with sulfate or sulfite as a sole sulfur source. Addition of sodium sulfide, glutathione, cysteine, methionine, N-acetyl-L-cysteine partially restored growth rate of the mutant suggesting that it is impaired in sulfate assimilation. Cellular iron content in Δyfh1 mutant was ~3-3.5 times higher as compared to the parental strain. It produced 50-70 times more riboflavin in iron sufficient synthetic media relative to the parental wildtype strain. Biomass yield of the mutant in the synthetic glutathione containing medium supplemented with glycerol as a sole carbon source was 1.4- and 2.6-fold increased as compared to sucrose and succinate containing media, respectively. Oxygen uptake of the Δyfh1 mutant on sucrose, glycerol or succinate, when compared to the parental strain, was decreased 5.5-, 1.7- and 1.5-fold, respectively. Substitution of sucrose or glycerol in the synthetic iron sufficient medium with succinate completely abolished riboflavin overproduction by the mutants. Deletion of the YFH1 gene caused hypersensitivity to hydrogen peroxide and exogenously added riboflavin and led to alterations in superoxide dismutase activities. Thus, deletion of the gene coding for yeast frataxin homologue has pleiotropic effect on metabolism in P. guilliermondii.

摘要

毕赤酵母是一种能够在缺铁条件下过量生产核黄素(维生素 B2)的酵母代表。我们鉴定并敲除了编码铁蛋白同源物的毕赤酵母 YFH1 基因,该基因是一种参与铁运输和储存的真核线粒体蛋白。构建的毕赤酵母Δyfh1 突变体在含有硫酸盐或亚硫酸盐作为唯一硫源的蔗糖合成培养基中生长非常差。添加硫化钠、谷胱甘肽、半胱氨酸、蛋氨酸、N-乙酰-L-半胱氨酸部分恢复了突变体的生长速率,表明其硫酸盐同化受损。与亲本菌株相比,Δyfh1 突变体中的细胞铁含量高约 3-3.5 倍。与亲本野生型菌株相比,在铁充足的合成培养基中,其产生的核黄素增加了 50-70 倍。与含有蔗糖和琥珀酸的培养基相比,突变体在含有合成谷胱甘肽的甘油作为唯一碳源的培养基中的生物量产量分别增加了 1.4-和 2.6 倍。与亲本菌株相比,Δyfh1 突变体在蔗糖、甘油或琥珀酸上的耗氧量分别降低了 5.5、1.7 和 1.5 倍。用琥珀酸替代合成铁充足培养基中的蔗糖或甘油完全消除了突变体的核黄素过量生产。YFH1 基因的缺失导致酵母铁蛋白同源物的缺失对毕赤酵母代谢产生了多效性影响。