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Overproduction of gentamicin B in industrial strain Micromonospora echinospora CCTCC M 2018898 by cloning of the missing genes genR and genS

机译:通过缺失基因genR和genS的克隆,在工业菌株Micromonospora echinospora CCTCC M 2018898中过量生产庆大霉素B

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In pharmaceutical industry, isepamicin is mainly manufactured from gentamicin B, which is produced by Micromonospora echinospora as a minor component of the gentamicin complex. Improvement of gentamicin B production through metabolic engineering is therefore important to satisfy the increasing demand for isepamicin. We hypothesized that gentamicin B was generated from gentamicin JI-20A via deamination of the C2’ amino group. Using kanJ and kanK as the gene probes, we identified the putative deamination-related genes, genR and genS , through genome mining of the gentamicin B producing strain M.?echinospora CCTCC M 2018898. Interestingly, genR and genS constitute a gene cassette located approximately 28.7?kb away from the gentamicin gene cluster. Gene knockout of genR and genS almost abolished the production of gentamicin B in the mutant strain, suggesting that these two genes, which are responsible for the last steps in gentamicin B biosynthesis, constitute the missing part of the known gentamicin biosynthetic pathway. Based on these finding, we successfully constructed a gentamicin B high-yielding strain (798?mg/L), in which an overexpression cassette of genR and genS was introduced. Our work fills the missing piece to solve the puzzle of gentamicin B biosynthesis and may inspire future metabolic engineering efforts to generate gentamycin B high-yielding strains that could eventually satisfy the need for industrial manufacturing of isepamicin.
机译:在制药工业中,异帕米星主要由庆大霉素B生产,后者是由Micromonospora echinospora作为庆大霉素复合物的次要成分生产的。因此,通过代谢工程改进庆大霉素B的生产对于满足异帕米星的日益增长的需求非常重要。我们假设庆大霉素B是由庆大霉素JI-20A通过C2'氨基的脱氨基而产生的。通过使用kanJ和kanK作为基因探针,我们通过庆大霉素B产生菌株M.?echinospora CCTCC M 2018898的基因组挖掘,确定了与脱氨相关的基因genR和genS。有趣的是,genR和genS构成了一个基因盒,位于大约距离庆大霉素基因簇28.7kb。 genR和genS的基因敲除几乎消除了突变菌株中庆大霉素B的产生,表明负责庆大霉素B生物合成最后步骤的这两个基因构成了已知的庆大霉素生物合成途径的缺失部分。基于这些发现,我们成功构建了庆大霉素B高产菌株(798?mg / L),其中引入了genR和genS的过表达盒。我们的工作填补了缺失的部分,从而解决了庆大霉素B生物合成的难题,并可能激发未来的代谢工程学努力,以生产出庆大霉素B高产菌株,这些菌株最终可以满足工业生产伊塞帕霉素的需求。

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