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Metabolic engineering of roseoflavin-overproducing microorganisms

机译:玫瑰杏林过度微生物的代谢工程

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Roseoflavin, a promising broad-spectrum antibiotic, is naturally produced by the bacteria Streptomyces davaonensis and Streptomyces cinnabarinus. The key enzymes responsible for roseoflavin biosynthesis and the corresponding genes were recently identified. In this study we aimed to enhance roseoflavin production in S. davaonensis and to synthesize roseoflavin in the heterologous hosts Bacillus subtilis and Corynebacterium glutamicum by (over)expression of the roseoflavin biosynthesis genes. While expression of the roseoflavin biosynthesis genes from S. davaonensis was not observed in recombinant strains of B. subtilis, overexpression was successful in C. glutamicum and S. davaonensis. Under the culture conditions tested, a maximum of 1.6?±?0.2?μM (ca. 0.7?mg/l) and 34.9?±?5.2?μM (ca. 14?mg/l) roseoflavin was produced with recombinant strains of C. glutamicum and S. davaonensis, respectively. In S. davaonensis the roseoflavin yield was increased by 78%. The results of this study provide a sound basis for the development of an economical roseoflavin production process.
机译:有前途的广谱抗生素的Roseoflavin自然由细菌霉菌和链霉菌鳞茎生成。最近鉴定了负责Roseoflavin生物合成和相应基因的关键酶。在这项研究中,我们旨在增强S. Davaonensis的Roseoflavin产量,并通过(在Roseoflavin Biosyntheris基因的表达中,在异源宿主Bacillus枯草芽孢杆菌和谷氨酸植物中合成Roseoflavin。虽然在B.枯草芽孢杆菌的重组菌株中未观察到来自S. Davaonensis的Roseoflavin生物合成基因的表达,但过表达在C.Glutamicum和S. davaonensis中取得过表达。在测试的培养条件下,最大为1.6?±0.2?μm(约0.7×mg / L)和34.9?±5.2?μm(约14×mg / L)玫瑰杏蛋白的c roseoflavin 。谷氨酰胺和达沃森分别。在达瓦森斯,玫瑰昔林产量增加了78%。该研究的结果为开发经济的Roseflavin生产过程提供了一种声音。

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