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首页> 外文期刊>Metabolic engineering >Systematic engineering of TCA cycle for optimal production of a four carbon platform chemical 4-hydroxybutyric acid in Escherichia coli
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Systematic engineering of TCA cycle for optimal production of a four carbon platform chemical 4-hydroxybutyric acid in Escherichia coli

机译:大肠杆菌中四种碳平台化学4-羟基丁酸的最佳生产的TCA周期的系统工程

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摘要

To address climate change and environmental problems, it is becoming increasingly important to establish biorefineries for the production of chemicals from renewable non-food biomass. Here we report the development of Escherichia coli strains capable of overproducing a four-carbon platform chemical 4-hybroxybutyric acid (4-HB). Because 4-HB production is significantly affected by aeration level, genome-scale metabolic model-based engineering strategies were designed under aerobic and microaerobic conditions with emphasis on oxidative/reductive TCA branches and glyoxylate shunt. Several different metabolic engineering strategies were employed to develop strains suitable for fermentation both under aerobic and microaerobic conditions. It was found that microaerobic condition was more efficient than aerobic condition in achieving higher titer and productivity of 4-HB. The final engineered strain produced 103.4 g/L of 4-HB by microaerobic fed-batch fermentation using glycerol. The aeration-dependent optimization strategy of TCA cycle will be useful for developing microbial strains producing other reduced derivative chemicals of TCA cycle intermediates.
机译:为了应对气候变化和环境问题,建立生物归系中的生物寄生,从而为可再生的非食物生物量制定化学品而越来越重要。在这里,我们报告了能够过度超过四碳平台化学4-氰氧基丁酸(4-Hb)的大肠杆菌菌株的发展。由于4-HB的生产受通气水平的显着影响,因此在有氧和微生物条件下设计了基于基于基于基于基于代谢模型的工程策略,重点是氧化/还原TCA分支和乙醛分流。采用几种不同的代谢工程策略在有氧和微血管条件下开发适合发酵的菌株。发现微生物病症比实现更高的滴度和4-Hb的生产率更有效。最终的工程菌株通过使用甘油的微生酵母FED分批发酵产生103.4g / L的4-HB。 TCA循环的曝气依赖性优化策略对于开发产生的微生物菌株产生产生的其他降低的TCA循环中间体的衍生物化学品。

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