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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Cumulative Mutations Affecting Sterol Biosynthesis in the Yeast Saccharomyces cerevisiae Result in Synthetic Lethality That Is Suppressed by Alterations in Sphingolipid Profiles
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Cumulative Mutations Affecting Sterol Biosynthesis in the Yeast Saccharomyces cerevisiae Result in Synthetic Lethality That Is Suppressed by Alterations in Sphingolipid Profiles

机译:影响酵母酿酒酵母中甾醇生物合成的累积突变导致鞘脂谱变化抑制的合成致死性

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UPC2 and ECM22 belong to a Zn(2)–Cys(6) family of fungal transcription factors and have been implicated in the regulation of sterol synthesis in Saccharomyces cerevisiae and Candida albicans . Previous reports suggest that double deletion of these genes in S. cerevisiae is lethal depending on the genetic background of the strain. In this investigation we demonstrate that lethality of upc2 Δ ecm22 Δ in the S288c genetic background is attributable to a mutation in the HAP1 transcription factor. In addition we demonstrate that strains containing upc2 Δ ecm22 Δ are also inviable when carrying deletions of ERG6 and ERG28 but not when carrying deletions of ERG3 , ERG4 , or ERG5 . It has previously been demonstrated that UPC2 and ECM22 regulate S. cerevisiae ERG2 and ERG3 and that the erg2 Δ upc2 Δ ecm22 Δ triple mutant is also synthetically lethal. We used transposon mutagenesis to isolate viable suppressors of hap1 Δ, erg2 Δ, erg6 Δ, and erg28 Δ in the upc2 Δ ecm22 Δ genetic background. Mutations in two genes ( YND1 and GDA1 ) encoding apyrases were found to suppress the synthetic lethality of three of these triple mutants but not erg2 Δ upc2 Δ ecm22 Δ. We show that deletion of YND1 , like deletion of GDA1 , alters the sphingolipid profiles, suggesting that changes in sphingolipids compensate for lethality produced by changes in sterol composition and abundance.
机译:UPC2和ECM22属于真菌转录因子Zn(2)–Cys(6)家族,在酿酒酵母和白色念珠菌中涉及甾醇合成的调控。先前的报道表明,根据菌株的遗传背景,在酿酒酵母中重复删除这些基因是致命的。在这项研究中,我们证明了S288c遗传背景中upc2Δecm22Δ的致死性可归因于HAP1转录因子的突变。此外,我们证明了当携带ERG6和ERG28缺失时,含有upc2Δecm22Δ的菌株也是不可行的,但是当携带ERG3,ERG4或ERG5缺失时则不可行。先前已经证明UPC2和ECM22调节啤酒酵母ERG2和ERG3,并且erg2Δupc2Δecm22Δ三重突变体也是合成致死的。我们使用转座子诱变在upc2Δecm22Δ遗传背景中分离了hap1Δ,erg2Δ,erg6Δ和erg28Δ的可行抑制子。发现两个编码无性腺的基因(YND1和GDA1)中的突变可抑制这三个三重突变体中的三个的合成致死性,但不能抑制erg2Δupc2Δecm22Δ。我们显示YND1的删除,如GDA1的删除,改变了鞘脂的概况,这表明鞘脂的变化补偿了固醇组成和丰度变化产生的致死性。

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