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泰乐菌素聚酮合酶在委内瑞拉链霉菌中的异源表达及一种杂交生物活性大环内酯的产生。

Heterologous expression of tylosin polyketide synthase and production of a hybrid bioactive macrolide in Streptomyces venezuelae.

作者信息

Jung Won Seok, Lee Sang Kil, Hong Jay Sung Joong, Park Sung Ryeol, Jeong Soon Jeong, Han Ah Reum, Sohng Jae Kyung, Kim Byung Gee, Choi Cha Yong, Sherman David H, Yoon Yeo Joon

机构信息

Interdisciplinary Program of Biochemical Engineering and Biotechnology, Seoul National University, San 56-1, Shilim-dong, Gwanak-gu, Seoul 151-742, South Korea.

出版信息

Appl Microbiol Biotechnol. 2006 Oct;72(4):763-9. doi: 10.1007/s00253-006-0318-5. Epub 2006 Feb 22.

Abstract

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.

摘要

泰乐菌素聚酮合酶(Tyl PKS)在委内瑞拉链霉菌的工程菌株中进行了异源表达,该工程菌株缺失了苦霉素聚酮合酶基因簇,使用了两个兼容的低拷贝质粒,每个质粒都受pikAI启动子的控制。经过4天培养后,突变菌株产生了0.5毫克/升的16元环大环内酯泰内酯,与其他链霉菌宿主相比,这是达到最大生产水平所需的相当短的培养时间。为了提高泰内酯的生产水平,向生长培养基中添加了几种乙基丙二酰辅酶A的前体,产量提高了2.8倍(达到1.4毫克/毫升);然而,将pikAI启动子换成actI启动子没有观察到效果。此外,从突变菌株的提取物中检测到少量去氧氨基糖基化的泰内酯,这表明天然糖基转移酶DesVII在接受16元环大环内酯以产生糖基化泰内酯方面表现出宽松的底物特异性。这些结果证明了在委内瑞拉链霉菌中成功实现了Tyl PKS的异源表达,并将委内瑞拉链霉菌引入作为生产次级代谢产物的快速异源表达系统。

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