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首页> 外文期刊>Metabolic engineering >From zero to hero--design-based systems metabolic engineering of Corynebacterium glutamicum for L-lysine production.
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From zero to hero--design-based systems metabolic engineering of Corynebacterium glutamicum for L-lysine production.

机译:从零到英雄的基于设计的系统,用于生产L-赖氨酸的谷氨酸棒杆菌的代谢工程。

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摘要

Here, we describe the development of a genetically defined strain of l-lysine hyperproducing Corynebacterium glutamicum by systems metabolic engineering of the wild type. Implementation of only 12 defined genome-based changes in genes encoding central metabolic enzymes redirected major carbon fluxes as desired towards the optimal pathway usage predicted by in silico modeling. The final engineered C. glutamicum strain was able to produce lysine with a high yield of 0.55 g per gram of glucose, a titer of 120 g L(-1) lysine and a productivity of 4.0 g L(-1) h(-1) in fed-batch culture. The specific glucose uptake rate of the wild type could be completely maintained during the engineering process, providing a highly viable producer. For these key criteria, the genetically defined strain created in this study lies at the maximum limit of classically derived producers developed over the last fifty years. This is the first report of a rationally derived lysine production strain that may be competitive with industrial applications. The design-based strategy for metabolic engineering reported here could serve as general concept for the rational development of microorganisms as efficient cellular factories for bio-production.
机译:在这里,我们描述了通过野生型的系统代谢工程,遗传定义的高产谷氨酸棒状杆菌赖氨酸的菌株的开发。在编码中央代谢酶的基因中仅实施12种定义的基于基因组的改变,即可根据需要将主要的碳通量重定向至计算机模拟预测的最佳途径。最终工程化的谷氨酸棒杆菌菌株能够生产赖氨酸,高产量为每克葡萄糖0.55 g,滴度为120 g L(-1)赖氨酸,生产力为4.0 g L(-1)h(-1) )分批补料培养。在工程过程中可以完全保持野生型的特定葡萄糖摄取率,从而提供了高度可行的生产者。对于这些关键标准,本研究中产生的遗传定义的菌株位于过去五十年间开发的经典衍生生产者的最大限制。这是关于合理衍生的赖氨酸生产菌株的首次报道,该菌株可能与工业应用竞争。此处报道的基于代谢设计的基于策略的策略可以作为合理开发微生物的一般概念,从而使微生物成为有效的生物生产细胞工厂。

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