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通过调节γ-聚谷氨酸合成酶表达鉴定聚γ-谷氨酸生产中的关键代谢物

Identification of Key Metabolites in Poly-γ-Glutamic Acid Production by Tuning γ-PGA Synthetase Expression.

作者信息

Halmschlag Birthe, Putri Sastia P, Fukusaki Eiichiro, Blank Lars M

机构信息

Institute of Applied Microbiology-iAMB, Aachen Biology and Biotechnology-ABBt, RWTH Aachen University, Aachen, Germany.

Department of Biotechnology, Graduate School of Engineering, Osaka University, Osaka, Japan.

出版信息

Front Bioeng Biotechnol. 2020 Jan 30;8:38. doi: 10.3389/fbioe.2020.00038. eCollection 2020.

Abstract

Poly-γ-glutamic acid (γ-PGA) production is commonly achieved using glycerol, citrate, and L-glutamic acid as substrates. The constitutive expression of the γ-PGA synthetase enabled γ-PGA production with from glucose only. The precursors for γ-PGA synthesis, D- and L-glutamate, are ubiquitous metabolites. Hence, the metabolic flux toward γ-PGA directly depends on the concentration and activity of the synthetase and thereby on its expression. To identify pathway bottlenecks and important metabolites that are highly correlated with γ-PGA production from glucose, we engineered strains with varying γ-PGA synthesis rates. To alter the rate of γ-PGA synthesis, the expression level was controlled by two approaches: (1) Using promoter variants from the constitutive promoter P and (2) Varying induction strength of the xylose inducible promoter P . The variation in the metabolism caused by γ-PGA production was investigated using metabolome analysis. The xylose-induction strategy revealed that the γ-PGA production rate increased the total fluxes through metabolism indicating a driven by demand adaption of the metabolism. Metabolic bottlenecks during γ-PGA from glucose were identified by generation of a model that correlates γ-PGA production rate with intracellular metabolite levels. The generated model indicates the correlation of certain metabolites such as phosphoenolpyruvate with γ-PGA production. The identified metabolites are targets for strain improvement to achieve high level γ-PGA production from glucose.

摘要

聚γ-谷氨酸(γ-PGA)的生产通常使用甘油、柠檬酸盐和L-谷氨酸作为底物来实现。γ-PGA合成酶的组成型表达使得仅利用葡萄糖就能生产γ-PGA。γ-PGA合成的前体,D-和L-谷氨酸,是普遍存在的代谢物。因此,朝向γ-PGA的代谢通量直接取决于合成酶的浓度和活性,进而取决于其表达。为了确定与从葡萄糖生产γ-PGA高度相关的途径瓶颈和重要代谢物,我们构建了具有不同γ-PGA合成速率的菌株。为了改变γ-PGA的合成速率,通过两种方法控制表达水平:(1)使用来自组成型启动子P的启动子变体,以及(2)改变木糖诱导型启动子P的诱导强度。利用代谢组分析研究了由γ-PGA生产引起的代谢变化。木糖诱导策略表明,γ-PGA的生产速率增加了通过代谢的总通量,表明这是由代谢的需求适应性驱动的。通过生成一个将γ-PGA生产速率与细胞内代谢物水平相关联的模型,确定了从葡萄糖生产γ-PGA过程中的代谢瓶颈。所生成的模型表明了某些代谢物如磷酸烯醇丙酮酸与γ-PGA生产之间的相关性。所确定的代谢物是菌株改良的靶点,以实现从葡萄糖高水平生产γ-PGA。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/443c/7002566/caf660cf7e2f/fbioe-08-00038-g001.jpg

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