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首页> 外文期刊>Applied Microbiology and Biotechnology >Improvement of gougerotin and nikkomycin production by engineering their biosynthetic gene clusters
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Improvement of gougerotin and nikkomycin production by engineering their biosynthetic gene clusters

机译:通过改造它们的生物合成基因簇来改善古格罗汀和尼古霉素的生产

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摘要

Nikkomycins and gougerotin are peptidyl nucleoside antibiotics with broad biological activities. The nikkomycin biosynthetic gene cluster comprises one pathway-specific regulatory gene (sanG) and 21 structural genes, whereas the gene cluster for gougerotin biosynthesis includes one putative regulatory gene, one major facilitator superfamily transporter gene, and 13 structural genes. In the present study, we introduced sanG driven by six different promoters into Streptomyces ansochromogenes TH322. Nikkomycin production was increased significantly with the highest increase in engineered strain harboring hrdB promoter-driven sanG. In the meantime, we replaced the native promoter of key structural genes in the gougerotin (gou) gene cluster with the hrdB promoters. The heterologous producer Streptomyces coelicolor M1146 harboring the modified gene cluster produced gougerotin up to 10-fold more than strains carrying the unmodified cluster. Therefore, genetic manipulations of genes involved in antibiotics biosynthesis with the constitutive hrdB promoter present a robust, easy-to-use system generally useful for the improvement of antibiotics production in Streptomyces.
机译:Nikkomycins和gougerotin是具有广泛生物活性的肽基核苷抗生素。尼克霉素生物合成基因簇包含一个途径特异性调控基因(sanG)和21个结构基因,而古格罗汀生物合成的基因簇包含一个推定的调控基因,一个主要的促进子超家族转运蛋白基因和13个结构基因。在本研究中,我们将由六个不同启动子驱动的sanG引入到产链霉菌TH322中。随着带有hrdB启动子驱动的sanG的工程菌株的增加,尼克霉素的产量显着增加。同时,我们用hrdB启动子替换了gougerotin(gou)基因簇中关键结构基因的天然启动子。具有修饰的基因簇的异源生产链霉菌Coelicolor M1146产生的古罗汀比携带未修饰的簇的菌株多出十倍。因此,用组成型hrdB启动子对涉及抗生素生物合成的基因进行遗传操作,提供了一种健壮,易于使用的系统,通常可用于改善链霉菌中的抗生素生产。

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