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首页> 外文期刊>Journal of Biotechnology >A transposon-based strategy to scale up myxothiazol production in myxobacterial cell factories.
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A transposon-based strategy to scale up myxothiazol production in myxobacterial cell factories.

机译:基于转座子的策略可扩大粘细菌细胞工厂中的噻噻唑产量。

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摘要

Myxobacteria are proficient producers of biologically active secondary metabolites. However, efforts to exploit these natural products for the development of new therapeutics and agrochemicals are frequently hampered by low production levels. We describe here a transposon-based strategy to identify genes encoding regulators of secondary metabolite biosynthesis in the myxobacterium Angiococcus disciformis An d48, which produces the highly efficient electron transport inhibitor myxothiazol. Extracts from 1200 transposon mutants were analyzed by HPLC, leading to the identification of six mutants in which myxothiazol production was increased by as much as 30-fold. Identifying the sites of integration coupled with sequencing of flanking regions, showed that some of the inactivated genes encode proteins with similarity to known bacterial regulators such as two-component systems and serine-threonine protein kinases. However, other gene products do not resemble any characterized proteins. Taken together, these data show that this transposon-based strategy is a valuable tool to identify regulatory genes of secondary metabolism, including gene loci which cannot be detected using current in silico approaches.
机译:粘细菌是具有生物活性的次级代谢产物的熟练生产者。然而,低产量经常阻碍了开发这些天然产物以开发新的疗法和农用化学品的努力。我们在这里描述了一种基于转座子的策略,以识别编码粘液线虫Ancococcus disciformis An d48次级代谢产物生物合成调节剂的基因,该基因可产生高效的电子转运抑制剂myxothiazol。通过HPLC分析了来自1200个转座子突变体的提取物,从而鉴定出了六个突变体,其中的噻噻唑产量增加了30倍。鉴定整合位点以及侧翼区域的测序表明,某些失活的基因编码的蛋白质与已知的细菌调节剂相似,例如两组分系统和丝氨酸-苏氨酸蛋白激酶。但是,其他基因产物与任何特征蛋白都不相似。综上所述,这些数据表明,这种基于转座子的策略是鉴定二级代谢调控基因的有价值的工具,包括使用当前的计算机方法无法检测到的基因位点。

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