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Genome-wide gene expression changes in an industrial clavulanic acid overproduction strain of Streptomyces clavuligerus

机译:工业克拉维酸生产过剩链霉菌克拉维链霉菌全基因组基因表达变化。

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摘要

To increase production of the important pharmaceutical compound clavulanic acid, a beta-lactamase inhibitor, both random mutagenesis approaches and rational engineering of Streptomyces clavuligerus strains have been extensively applied. Here, for the first time, we compared genome-wide gene expression of an industrial S. clavuligerus strain, obtained through iterative mutagenesis, with that of the wild-type strain. Intriguingly, we found that the majority of the changes contributed not to a complex rewiring of primary metabolism but consisted of a simple upregulation of various antibiotic biosynthesis gene clusters. A few additional transcriptional changes in primary metabolism at key points seem to divert metabolic fluxes to the biosynthetic precursors for clavulanic acid. In general, the observed changes largely coincide with genes that have been targeted by rational engineering in recent years, yet the presence of a number of previously unexplored genes clearly demonstrates that functional genomic analysis can provide new leads for strain improvement in biotechnology.
机译:为了增加重要的药物化合物棒酸(一种β-内酰胺酶抑制剂)的产量,广泛使用了随机诱变方法和合理设计棒状链霉菌菌株。在这里,我们首次比较了通过迭代诱变获得的工业链霉菌S. clavuligerus菌株与野生型菌株的全基因组基因表达。有趣的是,我们发现大多数变化不是导致初级代谢的复杂重新结合,而是由各种抗生素生物合成基因簇的简单上调组成。在关键点的初级代谢中的一些其他转录变化似乎将代谢通量转移至棒酸的生物合成前体。通常,观察到的变化在很大程度上与近年来理性工程针对的基因相吻合,然而,许多先前未经探索的基因的存在清楚地表明,功能基因组分析可以为生物技术中的菌株改良提供新的线索。

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