蛋氨酸
减压
大肠杆菌
重组DNA
代谢工程
工业发酵
生物化学
拉伤
化学
甲基化
生物合成
生物
发酵
氨基酸
酶
基因
基因表达
心理压抑
解剖
作者
Hua Li,Bao Shi Wang,You Ran Li,Liang Zhang,Zhong Ding,Zheng Hua Gu,Gui Yang Shi
标识
DOI:10.1007/s10295-016-1870-3
摘要
Abstract In this study, we constructed an l-methionine-producing recombinant strain from wild-type Escherichia coli W3110 by metabolic engineering. To enhance the carbon flux to methionine and derepression met regulon, thrBC, lysA, and metJ were deleted in turn. Methionine biosynthesis obstacles were overcome by overexpression of metAFbr (Fbr, Feedback resistance), metB, and malY under control of promoter pN25. Recombinant strain growth and methionine production were further improved by attenuation of metK gene expression through replacing native promoter by metK84p. Blocking the threonine pathway by deletion of thrBC or thrC was compared. Deletion of thrC showed faster growth rate and higher methionine production. Finally, metE, metF, and metH were overexpressed to enhance methylation efficiency. Compared with the original strain E. coli W3110, the finally obtained Me05 (pETMAFbr-B-Y/pKKmetH) improved methionine production from 0 to 0.65 and 5.62 g/L in a flask and a 15-L fermenter, respectively.
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