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首页> 外文期刊>FEMS Yeast Research >Overexpression of the aldose reductase GRE3 suppresses lithium-induced galactose toxicity in Saccharomyces cerevisiae
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Overexpression of the aldose reductase GRE3 suppresses lithium-induced galactose toxicity in Saccharomyces cerevisiae

机译:醛糖还原酶GRE3的过表达抑制酿酒酵母中锂诱导的半乳糖毒性

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摘要

In Saccharomyces cerevisiae, lithium induces a 'galactosemia-like' phenotype as a consequence of inhibition of phosphoglucomutase, a key enzyme in galactose metabolism. Induced galactose toxicity is prevented by deletion of GAL4, which inhibits the transcriptional activation of genes involved in galactose metabolism and by deletion of the galactokinase (GAL1), indicating that galactose-1-phosphate, a phosphorylated intermediate of the Leloir pathway, is the toxic compound. As an alternative to inhibiting entry and metabolism of galactose, we investigated whether deviation of galactose metabolism from the Leloir pathway would also overcome the galactosemic effect of lithium. We show that cells overexpressing the aldose reductase GRE3, which converts galactose to galactitol, are more tolerant to lithium than wild-type cells when grown in galactose medium and they accumulate more galactitol and less galactose-1-phosphate. Overexpression of GRE3 also suppressed the galactose growth defect of the 'galactosemic'gal7- and gal10-deleted strains, which lack galactose-1-P-uridyltransferase or UDP-galactose-4-epimerase activities, respectively. Furthermore, the effect of GRE3 was independent of the inositol monophosphatases INM1 and INM2. We propose that lithium induces a galactosemic state in yeast and that inhibition of the Leloir pathway before the phosphorylation step or stimulation of galactitol production suppresses lithium-induced galactose toxicity.
机译:在酿酒酵母中,锂可抑制半乳糖代谢中的关键酶磷酸葡萄糖突变酶,从而诱导“半乳糖血症样”表型。 GAL4的缺失可防止半乳糖毒性,GAL4抑制半乳糖代谢相关基因的转录激活,半乳糖激酶(GAL1)缺失则表明半乳糖-1-磷酸(Leloir途径的磷酸化中间体)具有毒性。复合。作为抑制半乳糖进入和代谢的替代方法,我们研究了半乳糖代谢与Leloir途径的偏离是否还会克服锂的半乳糖作用。我们显示,当细胞在半乳糖培养基中生长时,过表达醛糖还原酶GRE3(将半乳糖转化为半乳糖)的细胞比野生型细胞对锂的耐受性更高,并且它们积聚更多的半乳糖醇和更少的半乳糖1-磷酸。 GRE3的过表达也抑制了“半乳糖” gal7和gal10缺失菌株的半乳糖生长缺陷,它们分别缺乏半乳糖-1-P-尿苷基转移酶或UDP-半乳糖-4-表异构酶活性。此外,GRE3的作用独立于肌醇单磷酸酶INM1和INM2。我们建议锂诱导酵母中的半乳糖状态,并且在磷酸化步骤或刺激半乳糖醇生产之前抑制Leloir途径会抑制锂诱导的半乳糖毒性。

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