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协同利用葡萄糖和甘油高效合成肌醇。

Synergetic utilization of glucose and glycerol for efficient myo-inositol biosynthesis.

机构信息

State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing, China.

出版信息

Biotechnol Bioeng. 2020 Apr;117(4):1247-1252. doi: 10.1002/bit.27263. Epub 2020 Jan 13.

Abstract

myo-Inositol (MI) as a dietary supplement can provide various health benefits. One major challenge to its efficient biosynthesis is to achieve proper distribution of carbon flux between growth and production. Herein, this challenge was overcome by synergetic utilization of glucose and glycerol. Specifically, glycerol was catabolized to support cell growth while glucose was conserved as the building block for MI production. Growth and production were coupled via the phosphotransferase system, and both modules were optimized to achieve efficient production. First, the optimal enzyme combination was established for the production module. It was observed that enhancing the production module resulted in both increased MI production and better cell growth. In addition, glucose was shown to inhibit glycerol utilization via carbon catabolite repression and the inhibition was released by over-expressing glycerol kinase. Furthermore, the inducible promoter was replaced by strong constitutive promoters to avoid inducer use. With these efforts, the final strain produced MI with both high titer and yield. In fed-batch cultivation, 76 g/L of MI was produced, showing scale-up potential. This study provides a promising strategy to achieve rational distribution of carbon flux.

摘要

肌醇(MI)作为膳食补充剂可以提供多种健康益处。其高效生物合成的一个主要挑战是在生长和生产之间实现碳通量的合理分配。在此,通过协同利用葡萄糖和甘油克服了这一挑战。具体来说,甘油被分解代谢以支持细胞生长,而葡萄糖则被保留作为 MI 生产的构建块。通过磷酸转移酶系统将生长和生产偶联起来,并且对两个模块进行了优化以实现高效生产。首先,为生产模块建立了最佳的酶组合。结果表明,增强生产模块不仅可以增加 MI 的产量,还可以改善细胞生长。此外,葡萄糖通过碳分解代谢物阻遏抑制甘油利用,通过过表达甘油激酶可以释放这种抑制。此外,通过替换诱导型启动子为强组成型启动子来避免使用诱导剂。通过这些努力,最终的菌株以高产率生产出 MI。在分批补料培养中,生产出 76g/L 的 MI,显示出扩大规模的潜力。本研究为实现碳通量的合理分配提供了有前途的策略。

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