Department of Biological Engineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, PR China.
Biotechnol Bioeng. 2013 Oct;110(10):2717-30. doi: 10.1002/bit.24941. Epub 2013 May 16.
FK506, a widely used immunosuppressant, is produced by industrial fermentation processes using various Streptomyces species. However, the low titer becomes a bottleneck for its application and industrialization. It urgently required a full understanding of the biological mechanisms for FK506 overproduction. Towards this end, comparative metabolomics approach was employed to analyze metabolite concentrations difference of Streptomyces tsukubaensis cultivated in two media with low and high productivities. Initially, 98 intracellular metabolites were identified and 13 metabolites involved in five pathways were determined to be directly correlated with FK506 biosynthesis. Then in-depth analysis elucidated how those key factors exerted influence on FK506 biosynthesis. Many previously unreported metabolites were shown to play an important role in FK506 biosynthesis and provided potential regulation points for external manipulation. Based on such key information, rationally designed feeding strategy was carried out. Results showed that the FK506 yield increased from 251 to 405 mg/L, whereas, by-products FK520 and 37,38-dihydro-FK506 decreased by 31% and 39%, respectively, compared with the values of control. To our knowledge, it is the first study to apply the comparative metabolomics method to identify key metabolites to promote the FK506 production. The strategies developed here can easily be extended to titer improvement of other important microbial natural products and process optimization.
FK506 是一种广泛应用的免疫抑制剂,通过使用各种链霉菌属的工业发酵工艺生产。然而,低效价成为其应用和工业化的瓶颈。迫切需要充分了解 FK506 过量生产的生物学机制。为此,采用比较代谢组学方法分析了在两种低产率和高产率培养基中培养的链霉菌属 tsukubaensis 的代谢物浓度差异。最初,鉴定了 98 种细胞内代谢物,确定了 13 种与 FK506 生物合成直接相关的五种途径中的代谢物。然后深入分析阐明了这些关键因素如何对 FK506 生物合成产生影响。许多以前未报道的代谢物被证明在 FK506 生物合成中发挥重要作用,并为外部操作提供了潜在的调节点。基于这些关键信息,进行了合理设计的补料策略。结果表明,与对照相比,FK506 的产量从 251 毫克/升增加到 405 毫克/升,而 FK520 和 37,38-二氢-FK506 的副产物分别减少了 31%和 39%。据我们所知,这是首次应用比较代谢组学方法来鉴定关键代谢物以促进 FK506 生产的研究。这里开发的策略可以很容易地扩展到其他重要微生物天然产物的效价提高和工艺优化。