Search

Activation of glyoxylate pathway without the activation of its related gene in succinate-producing engineered Escherichia coli

메타 데이터

바이오화학분류
    • 바이오플라스틱
      1. 고무
      2. 플라스틱
    • 바이오정밀화학
      1. 용매
      2. 화학제품
      3. 연료
      4. 기타
    • 화장품용 기능성소재
      1. 계면활성제⁄증점제
    • 의료용 화학소재
      1. 치료제
      2. 식품첨가제
논문

Activation of glyoxylate pathway without the activation of its related gene in succinate-producing engineered Escherichia coli

학술지

Metabolic engineering

저자명

Zhu, L.W.; Li, X.H.; Zhang, L.; Li, H.M.; Liu, J.H.; Yuan, Z.P.; Chen, T.; Tang, Y.J.

초록

For the first time, glyoxylate pathway in the biosynthesis of succinate was activated without the genetic manipulations of any gene related with glyoxylate pathway. Furthermore, the inactivation of succinate biosynthesis by-products genes encoding acetate kinase (ackA) and phosphotransacetylase (pta) was proven to be the key factor to activate glyoxylate pathway in the metabolically engineered Escherichia coli under anaerobic conditions. In order to enhance the succinate biosynthesis specifically, the genes (i.e., ldhA, ptsG, ackA-pta, focA-pflB, adhE) that disrupt by-products biosynthesis pathways were combinatorially deleted, while the E. coli malate dehydrogenase (MDH) was overexpression. The highest succinate production of 150.78mM was obtained with YJ003 (&Delta;ldhA, ptsG, ackA-pta), which were 5-folds higher than that obtained with wild type control strain DY329 (25.13mM). For further understand the metabolic response as a result of several genetic manipulations, an anaerobic stoichiometric model that takes into account the glyoxylate pathway have successfully been implemented to estimate the intracellular fluxes in various recombinant E. coli. The fraction to the glyoxylate pathway from OAA in DY329 was 0 and 31% in YJ003, which indicated that even without the absence of the iclR mutation; the glyoxylate pathway was also activated by deleting the by-products biosynthetic genes, and to be responsible for the higher succinate yields. For further strengthen glyoxylate pathway, a two-stage fed-batch fermentation process was developed by using a 600gl<SUP>-1</SUP> glucose feed to achieve a cell growth rate of 0.07h<SUP>-1</SUP> in aerobic fermentation, and using a 750gl<SUP>-1</SUP> glucose feed to maintain the residual glucose concentration around 40gl<SUP>-1</SUP> when its residual level decreased to 10gl<SUP>-1</SUP> in anaerobic fermentation. The best mutant strain YJ003/pTrc99A-mdh produces final succinate concentration of 274mM by fed-batch culture, which was 10-folds higher than that obtained with wild type control strain DY329. This study discovered that glyoxylate pathway could be activated by deleting glyoxylate pathway irrelevant genes (i.e., genes encoding acetate and lactate) and consequently the succinate biosynthesis was effectively improved. This work provides useful information for the modification of metabolic pathway to improve succinate production.

발행연도

2013

발행기관

Academic Press

ISSN

1096-7176

ISSN

1096-7184

20

페이지

pp.9-19

주제어

Escherichia coli; Succinate; Activated glyoxylate pathway; Acetate kinase and phosphotransacetylase (ackA-pta); Metabolic flux analysis

0건의 논문이 있습니다.

0건의 특허가 있습니다.

0건의 무역이 있습니다.

5건의 후보군 물질이 있습니다.

1 2023-12-11
2 2023-12-11
4 2023-12-11
5 2023-12-11

논문; 2013-11-01

Export

About

Search

Trend