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首页> 外文期刊>Applied Microbiology and Biotechnology >Heterologous expression of tylosin polyketide synthase and production of a hybrid bioactive macrolide in Streptomyces venezuelae
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Heterologous expression of tylosin polyketide synthase and production of a hybrid bioactive macrolide in Streptomyces venezuelae

机译:委内瑞拉链霉菌中泰乐菌素聚酮化合物合酶的异源表达和生物活性大环内酯类化合物的生产

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摘要

Tylosin polyketide synthase (Tyl PKS) was heterologously expressed in an engineered strain of Streptomyces venezuelae bearing a deletion of pikromycin PKS gene cluster using two compatible low-copy plasmids, each under the control of a pikAI promoter. The mutant strain produced 0.5 mg/l of the 16-membered ring macrolactone, tylactone, after a 4-day culture, which is a considerably reduced culture period to reach the maximum production level compared to other Streptomyces hosts. To improve the production level of tylactone, several precursors for ethylmalonyl-CoA were fed to the growing medium, leading to a 2.8-fold improvement (1.4 mg/ml); however, switching the pikAI promoter to an actI promoter had no observable effect. In addition, a small amount of desosamine-glycosylated tylactone was detected from the extract of the mutant strain, revealing that the native glycosyltransferase DesVII displayed relaxed substrate specificity in accepting the 16-membered ring macrolactone to produce the glycosylated tylactone. These results demonstrate a successful attempt for a heterologous expression of Tyl PKS in S. venezuelae and introduce S. venezuelae as a rapid heterologous expression system for the production of secondary metabolites.
机译:泰乐菌素聚酮化合物合酶(Tyl PKS)使用两个兼容的低拷贝质粒在委内链霉菌的工程菌株中异源表达,该菌株带有吡咯霉素PKS基因簇的缺失,每个质粒都在pikAI启动子的控制下。经过4天的培养后,该突变菌株产生了0.5 mg / l的16元环大环内酯,丁内酯,与其他链霉菌宿主相比,该培养期大大缩短,可以达到最大产量。为了提高丁内酯的生产水平,将几种乙基丙二酰辅酶A的前体喂入了生长培养基,从而提高了2.8倍(1.4毫克/毫升)。但是,将pikAI启动子转换为actI启动子没有明显的效果。另外,从突变菌株的提取物中检测到少量的去氨糖基糖基化的内酯,这表明天然糖基转移酶DesVII在接受16元环大内酯以产生糖基化的内酯方面显示出松弛的底物特异性。这些结果证明了在S.委内瑞拉中异源表达Tyl PKS的成功尝试,并将委内瑞拉链球菌引入为用于产生次级代谢产物的快速异源表达系统。

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  • 来源
    《Applied Microbiology and Biotechnology》 |2006年第4期|763-769|共7页
  • 作者单位

    Interdisciplinary Program of Biochemical Engineering and Biotechnology Seoul National University;

    School of Chemical and Biological Engineering Seoul National University;

    Interdisciplinary Program of Biochemical Engineering and Biotechnology Seoul National University;

    Division of Nano Sciences Department of Chemistry Ewha Woman’s University;

    Division of Nano Sciences Department of Chemistry Ewha Woman’s University;

    Interdisciplinary Program of Biochemical Engineering and Biotechnology Seoul National University;

    Institute of Biomolecule Reconstruction Department of Pharmaceutical Engineering Sun Moon University;

    Interdisciplinary Program of Biochemical Engineering and Biotechnology Seoul National UniversitySchool of Chemical and Biological Engineering Seoul National University;

    Interdisciplinary Program of Biochemical Engineering and Biotechnology Seoul National UniversitySchool of Chemical and Biological Engineering Seoul National University;

    Life Sciences Institute Department of Medicinal Chemistry University of Michigan;

    Division of Nano Sciences Department of Chemistry Ewha Woman’s University;

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