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首页> 外文期刊>Journal of bacteriology >The Folate Branch of the Methionine Biosynthesis Pathway in Streptomyces lividans: Disruption of the 5,10-Methylenetetrahydrofolate Reductase Gene Leads to Methionine Auxotrophy
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The Folate Branch of the Methionine Biosynthesis Pathway in Streptomyces lividans: Disruption of the 5,10-Methylenetetrahydrofolate Reductase Gene Leads to Methionine Auxotrophy

机译:链霉菌蛋氨酸中蛋氨酸生物合成途径的叶酸分支:5,10-亚甲基四氢叶酸还原酶基因的破坏导致蛋氨酸营养不良。

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摘要

In enterobacteria, the methyl group of methionine is donated by 5-methyltetrahydrofolate that is synthesized fromN 5,10-methylenetetrahydrofolate by the 5,10-methylenetetrahydrofolate reductase. The Streptomyces lividans metF gene, which encodes 5,10-methylenetetrahydrofolate reductase, has been cloned. It encodes a protein of 307 amino acids with a deduced molecular mass of 33,271 Da. S1 exonuclease mapping of the transcription initiation site showed that the metF gene is expressed, forming a leaderless mRNA. A 13-bp tandem repeat located immediately upstream of the promoter region shows homology with the consensus MetR-binding sequence of Salmonella typhimurium. Expression of metF in multicopy plasmids in S. lividans resulted in accumulation of a 32-kDa protein, as shown by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Disruption of the metF gene led to methionine auxotrophy. Integration of the disrupting plasmid at the metF locus was confirmed by Southern hybridization in three randomly isolated transformants. The methionine auxotrophy was complemented by transformation of the auxotrophs with an undisrupted metFgene. These results indicate that the folate branch is essential for methionine biosynthesis in streptomycetes, as occurs in enterobacteria.
机译:在肠杆菌中,甲硫氨酸的甲基是由5,10-亚甲基四氢叶酸还原酶由 N 5,10 亚甲基四氢叶酸合成的5-甲基四氢叶酸提供的。克隆了 Streptomyces lividans metF 基因,该基因编码5,10-亚甲基四氢叶酸还原酶。它编码307个氨基酸的蛋白质,推导的分子量为33,271 Da。转录起始位点的S1核酸外切酶作图表明 metF 基因表达,形成无前导mRNA。位于启动子区上游的一个13 bp的串联重复序列与鼠伤寒沙门氏菌的共有MetR结合序列同源。 metF S中的多拷贝质粒中的表达。十二烷基硫酸钠-聚丙烯酰胺凝胶电泳显示,lividans 导致32-kDa蛋白的积累。 metF 基因的破坏导致蛋氨酸营养缺陷。通过在三个随机分离的转化体中的Southern杂交证实了破坏质粒在 metF 基因座的整合。蛋氨酸营养缺陷型由营养缺陷型转化而来,其中营养缺陷型具有不变的 metF 基因。这些结果表明,叶状分支对于链霉菌中蛋氨酸的生物合成是必不可少的,就像在肠杆菌中一样。

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