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通过增强启动子强度重建代谢模块可提高酿酒酵母中 2-苯乙醇的产量。

Reconstruction of metabolic module with improved promoter strength increases the productivity of 2-phenylethanol in Saccharomyces cerevisiae.

机构信息

CAS Key Laboratory of Microbial Physiological and Metabolic Engineering, State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing, China.

College of Life Sciences, University of Chinese Academy of Sciences, Beijing, China.

出版信息

Microb Cell Fact. 2018 Apr 11;17(1):60. doi: 10.1186/s12934-018-0907-x.

Abstract

BACKGROUND

2-phenylethanol (2-PE) is an important aromatic compound with a lovely rose-like scent. Saccharomyces cerevisiae is a desirable microbe for 2-PE production but its natural yield is not high, and one or two crucial genes' over-expression in S. cerevisiae did not improve 2-PE greatly.

RESULTS

A new metabolic module was established here, in which, permease Gap1p for L-phenylalanine transportation, catalytic enzymes Aro8p, Aro10p and Adh2p in Ehrlich pathway respectively responsible for transamination, decarboxylation and reduction were assembled, besides, glutamate dehydrogenase Gdh2p was harbored for re-supplying another substrate 2-oxoglutarate, relieving product glutamate repression and regenerating cofactor NADH. Due to different promoter strengths, GAP1, ARO8, ARO9, ARO10, ADH2 and GDH2 in the new modularized YS58(G1-A8-A10-A2)-GDH strain enhanced 11.6-, 15.4-, 3.6-, 17.7-, 12.4- and 7.5-folds respectively, and crucial enzyme activities of aromatic aminotransferases and phenylpyruvate decarboxylase were 4.8- and 7-folds respectively higher than that of the control.

CONCLUSIONS

Under the optimum medium and cell density, YS58(G1-A8-A10-A2)-GDH presented efficient 2-PE synthesis ability with ~ 6.3 g L of 2-PE titer in 5-L fermenter reaching 95% of conversation ratio. Under fed-batch fermentation, 2-PE productivity at 24 h increased 29% than that of single-batch fermentation. Metabolic modularization with promoter strategy provides a new prospective for efficient 2-PE production.

摘要

背景

2-苯乙醇(2-PE)是一种重要的芳香族化合物,具有宜人的玫瑰香气。酿酒酵母是生产 2-PE 的理想微生物,但天然产量不高,在酿酒酵母中过表达一两个关键基因并不能显著提高 2-PE 的产量。

结果

在这里建立了一个新的代谢模块,其中包括 L-苯丙氨酸转运的渗透酶 Gap1p、Ehrlich 途径中的催化酶 Aro8p、Aro10p 和 Adh2p,以及用于再供应另一种底物 2-酮戊二酸、缓解产物谷氨酸抑制和再生辅酶 NADH 的谷氨酸脱氢酶 Gdh2p。由于启动子强度不同,新模块化 YS58(G1-A8-A10-A2)-GDH 菌株中的 GAP1、ARO8、ARO9、ARO10、ADH2 和 GDH2 分别增强了 11.6 倍、15.4 倍、3.6 倍、17.7 倍、12.4 倍和 7.5 倍,芳香族转氨酶和苯丙酮酸脱羧酶的关键酶活性分别提高了 4.8 倍和 7 倍。

结论

在最佳培养基和细胞密度下,YS58(G1-A8-A10-A2)-GDH 在 5-L 发酵罐中具有高效的 2-PE 合成能力,2-PE 产量约为 6.3 g/L,转化率达到 95%。在补料分批发酵中,24 h 时的 2-PE 比生产率比分批发酵提高了 29%。基于启动子策略的代谢模块化为高效生产 2-PE 提供了新的前景。

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