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首页> 外文期刊>Metabolic engineering >Generation of a cluster-free Streptomyces albus chassis strains for improved heterologous expression of secondary metabolite clusters
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Generation of a cluster-free Streptomyces albus chassis strains for improved heterologous expression of secondary metabolite clusters

机译:产生无菌链霉菌的Albus底盘菌株,用于改善次级代谢物簇的异源表达

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Natural products are a rich source of potential drugs for many applications. Discovery of natural products through the activation of cryptic gene clusters encoding their biosynthetic pathways, engineering of those biosynthetic pathways and optimization of production yields often rely on the expression of these gene clusters in suitable heterologous host strains. Streptomyces albus J1074 provides high success rates of heterologous cluster expression with high levels of metabolite production, rapid growth and amenability to genetic manipulations. Here, we report the construction of S. albus chassis strains optimized for the discovery of natural products through heterologous expression of secondary metabolite clusters. 15 clusters encoding secondary metabolite biosynthetic pathways were deleted in the chromosome of S. albus Del14. This strain provides a substantially improved compound detection limit, owing to the lack of native secondary metabolites. Furthermore, the production yield of natural products heterologously expressed in S. albus Del14 was higher than in commonly used S. albus J1074 and S. coelicolor hosts. S. albus strains B2P1 and B4 were generated by introduction of additional phage phiC31 attB sites into the chromosome of S. albus Del14, allowing integration of up to four copies of a heterologous gene cluster. Amplification of gene clusters in the chromosome of the constructed strains further improved production yields of the encoded compounds. One cryptic cluster from Streptomyces spp. and two clusters from distantly related Frankia spp. strains were successfully activated in these new chassis strains, leading to the isolation of a new compound fralnimycin.
机译:天然产品是许多应用的丰富潜在药物来源。通过激活编码其生物合成途径的隐秘基因簇的激活,这些生物合成途径的工程和生产产量的优化通常依赖于这些基因簇在合适的异源宿主菌株中的表达。 Streptomyces Albus J1074提供了具有高水力的代谢产物生产,快速生长和遗传操作的高含量簇表达的高成功率。在这里,我们通过次级代谢物簇的异源表达,报告了针对天然产物的发现进行了优化的S.Balus底盘菌株的构建。在S.Bolus del14的染色体中删除了编码次级代谢物生物合成途径的15个簇。由于缺乏天然次级代谢产物,该应变提供了基本上改善的化合物检测限。此外,在S.balus del14中异常表达的天然产物的产量高于常用的S.B1074和S.共喹啉宿主。通过将额外的噬菌体phic31 attb位点引入S.balus del14的染色体中,产生额外的噬菌体phic31 attb位点,允许整合多达四个异源基因簇的拷贝。构建菌株染色体中基因簇的扩增进一步提高了编码化合物的产量。来自Streptomyces SPP的一个隐秘群集。和远远相关的弗兰基斯SPP的两个集群。在这些新的底盘菌株中成功地激活了菌株,导致新化合物Fralnimycin的分离。

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