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首页> 外文期刊>FEBS Letters >Functional identification of sterol‐4α‐methyl oxidase cDNAs from Arabidopsis thaliana by complementation of a yeast erg25 mutant lacking sterol‐4α‐methyl oxidation1
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Functional identification of sterol‐4α‐methyl oxidase cDNAs from Arabidopsis thaliana by complementation of a yeast erg25 mutant lacking sterol‐4α‐methyl oxidation1

机译:通过缺失缺乏甾醇-4α-甲基氧化的酵母erg25突变体的互补,从拟南芥中固醇-4α-甲基氧化酶cDNA的功能鉴定1

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摘要

>Specific primers derived from both genomic sequence data and EST cDNA sequences were used to polymerase chain reaction amplify two full-length cDNA sequences (AtSMO1 and AtSMO2), 801 and 783 bp, respectively, from an Arabidopsis thaliana cDNA library. The predicted proteins show 32 and 29% identity to the ERG25 gene from Saccharomyces cerevisiae which encodes the sterol-4α-methyl oxidase (SMO), a membrane-bound non-heme di-iron oxygenase involved in lipid metabolism. Heterologous expression of AtSMO1 and AtSMO2 in a yeast erg25 ergosterol auxotroph, lacking SMO activity, restored growth and endogenous ergosterol synthesis. These results represent the first functional identification of SMO genes from plants.
机译:>使用来自基因组序列数据和EST cDNA序列的特定引物,通过聚合酶链反应扩增两个全长cDNA序列( At SMO1和 At SMO2),拟南芥(Arabidopsis thaliana)cDNA文库中分别有801和783 bp。预测的蛋白质与酿酒酵母的 ERG25 基因具有32%和29%的同一性,该基因编码固醇-4α-甲基氧化酶(SMO),膜结合的非血红素二铁氧化酶参与脂质代谢。 At SMO1和 At SMO2在酵母 erg25 麦角固醇营养缺陷型中的异源表达,缺乏SMO活性,恢复了生长和内源性麦角固醇的合成。这些结果代表了植物中SMO基因的首次功能鉴定。

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