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通过代谢工程改造谷氨酸棒杆菌 WM001 以提高 l-异亮氨酸的产量。

Metabolic engineering of Corynebacterium glutamicum WM001 to improve l-isoleucine production.

机构信息

State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi, People's Republic of China.

Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, People's Republic of China.

出版信息

Biotechnol Appl Biochem. 2021 Jun;68(3):568-584. doi: 10.1002/bab.1963. Epub 2020 Jun 15.

Abstract

In this study, l-isoleucine production in Corynebacterium glutamicum WM001 was improved by deleting three genes in the genome, replacing the native promoter of ilvA in the genome, and overexpression of five genes in an alr-based auxotrophic complementation expression system. The three genes deleted in the genome are alaT, brnQ, and alr. Deletion of alaT improved l-isoleucine production by increasing the supply of pyruvate, whereas deletion of brnQ improved l-isoleucine production by blocking the uptake of extracellular l-isoleucine. Exchange of the native promoter of ilvA with promoter tac or tacM could contribute to l-isoleucine production by increasing 2-ketobutyric acid; tac is better than tacM for improving l-isoleucine yield. Different combinations of the genes ilvBN, ppnK, lrp, and brnFE were overexpressed in an alr-based auxotrophic complementation expression system to further improve l-isoleucine production, and the best yield after 72-H flask fermentation was obtained from the strain WM005/pYCW-1-ilvBN2-ppnK1. Without addition of any antibiotics, WM005/pYCW-1-ilvBN2-ppnK1 could produce 32.1 g/L l-isoleucine after 72-H fed-batch fermentation, which is 34.3% increase compared with the original strain WM001.

摘要

在这项研究中,通过敲除基因组中的三个基因、替换基因组中ilvA 的天然启动子以及在基于 alr 的营养缺陷型补偿表达系统中过表达五个基因,提高了谷氨酸棒杆菌 WM001 中的 l-异亮氨酸生产。基因组中敲除的三个基因为 alaT、brnQ 和 alr。alaT 的缺失通过增加丙酮酸的供应来提高 l-异亮氨酸的产量,而 brnQ 的缺失通过阻断细胞外 l-异亮氨酸的摄取来提高 l-异亮氨酸的产量。用 tac 或 tacM 替换 ilvA 的天然启动子可以通过增加 2-酮丁酸来促进 l-异亮氨酸的生产;tac 比 tacM 更有利于提高 l-异亮氨酸的产量。在基于 alr 的营养缺陷型补偿表达系统中过表达不同组合的 ilvBN、ppnK、lrp 和 brnFE 基因,进一步提高 l-异亮氨酸的产量,在 72 小时摇瓶发酵后,从菌株 WM005/pYCW-1-ilvBN2-ppnK1 中获得最佳产量。在不添加任何抗生素的情况下,WM005/pYCW-1-ilvBN2-ppnK1 可以在 72 小时分批补料发酵后生产 32.1 g/L 的 l-异亮氨酸,与原始菌株 WM001 相比,产量提高了 34.3%。

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