谷氨酸棒杆菌
代谢工程
氨基酸
生物化学
赖氨酸
生物
异亮氨酸
代谢途径
大肠杆菌
苏氨酸
必需氨基酸
发酵
化学
生物技术
新陈代谢
亮氨酸
丝氨酸
基因
酶
作者
Yanjun Li,Hongbo Wei,Ting Wang,Qingyang Xu,Chenglin Zhang,Xiaoguang Fan,Qian Ma,Ning Chen,Xixian Xie
标识
DOI:10.1016/j.biortech.2017.05.145
摘要
The l-aspartate amino acids (AFAAs) are constituted of l-aspartate, l-lysine, l-methionine, l-threonine and l-isoleucine. Except for l-aspartate, AFAAs are essential amino acids that cannot be synthesized by humans and most farm animals, and thus possess wide applications in food, animal feed, pharmaceutical and cosmetics industries. To date, a number of amino acids, including AFAAs have been industrially produced by microbial fermentation. However, the overall metabolic and regulatory mechanisms of the synthesis of AFAAs and the recent progress on strain construction have rarely been reviewed. Aiming to promote the establishment of strains of Corynebacterium glutamicum and Escherichia coli, the two industrial amino acids producing bacteria, that are capable of producing high titers of AFAAs and derivatives, this paper systematically summarizes the current progress on metabolic engineering manipulations in both central metabolic pathways and AFAA synthesis pathways based on the category of the five-word strain breeding strategies: enter, flow, moderate, block and exit.
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