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A systems level engineered E. coli capable of efficiently producing L-phenylalanine

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논문

A systems level engineered E. coli capable of efficiently producing L-phenylalanine

학술지

Process biochemistry

저자명

Liu, S.P.; Liu, R.X.; Xiao, M.R.; Zhang, L.; Ding, Z.Y.; Gu, Z.H.; Shi, G.Y.

초록

The biosynthesis of L-phenylalanine (Phe) is one of the most complicated amino acid synthesis pathways. In this study, the engineering of Phe producer was carried out to illustrate the effectiveness of systems level engineering: (1) inactivated glucose specific phosphoenolpyruvate-carbohydrate phosphotransferase (PTS) system by inactivation of crr to moderate the glucose uptake rate to reduce overflow metabolism; (2) genetic switch on or off the expression of phe<SUP>fbr</SUP>, aroG15, ydiB, aroK, and tyrB to increase the supply of precursors; (3) employed a tyrA mutant strain to reduce carbon diversion and to result in non-growing cells; (4) enhanced the efflux of Phe by overexpressing yddG to shift equilibrium towards Phe synthesis and to release the feedback regulation in Phe synthesis. The mutants in PTS were firstly compared and a crr<SUP>-</SUP> mutant was firstly screened. The mutant AroG15 was demonstrated to a thermostable mutant. The strains expressing yddG excreted Phe into the medium at higher rate and less intracellular Phe accumulated. By systems level engineering, an engineered Phe producer achieved 47.0g/L Phe with a yield of 0.252g/g which was the highest under the non-optimized fermentation condition.

발행연도

2014

발행기관

Elsevier Applied Science

ISSN

1359-5113

49

5

페이지

pp.751-757

주제어

Synthetic biology; Phenylalanine; Genetic switch; Systems level engineering; Metabolic engineering

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1 2023-12-11

논문; 2014-05-01

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