Metabolic regulation analysis of wild-type and arcA mutant Escherichia coli under nitrate conditions using different levels of omics data

被引:29
作者
Toya, Yoshihiro [1 ]
Nakahigashi, Kenji [1 ]
Tomita, Masaru [1 ,2 ]
Shimizu, Kazuyuki [1 ,3 ]
机构
[1] Keio Univ, Inst Adv Biosci, Tsuruoka, Yamagata 9970017, Japan
[2] Keio Univ, Grad Sch Media & Governance, Syst Biol Program, Fujisawa, Kanagawa 2528520, Japan
[3] Kyushu Inst Technol, Dept Biosci & Bioinformat, Iizuka, Fukuoka 8208502, Japan
关键词
TRANSCRIPTIONAL REGULATION; GENE KNOCKOUT; FLUX ANALYSIS; GROWTH RATE; FNR; EXPRESSION; NARL; INTEGRATION; GLUCOSE; ADAPTATION;
D O I
10.1039/c2mb25069a
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
It is of practical interest to investigate the effect of nitrates on bacterial metabolic regulation of both fermentation and energy generation, as compared to aerobic and anaerobic growth without nitrates. Although gene level regulation has previously been studied for nitrate assimilation, it is important to understand this metabolic regulation in terms of global regulators. In the present study, therefore, we measured gene expression using DNA microarrays, intracellular metabolite concentrations using CE-TOFMS, and metabolic fluxes using the C-13-labeling technique for wild-type E. coli and the Delta arcA (a global regulatory gene for anoxic response control, ArcA) mutant to compare the metabolic state under nitrate conditions to that under aerobic and anaerobic conditions without nitrates in continuous culture conditions at a dilution rate of 0.2 h(-1). In wild-type, although the measured metabolite concentrations changed very little among the three culture conditions, the TCA cycle and the pentose phosphate pathway fluxes were significantly different under each condition. These results suggested that the ATP production rate was 29% higher under nitrate conditions than that under anaerobic conditions, whereas the ATP production rate was 10% lower than that under aerobic conditions. The flux changes in the TCA cycle were caused by changes in control at the gene expression level. In DarcA mutant, the TCA cycle flux was significantly increased (4.4 times higher than that of the wild type) under nitrate conditions. Similarly, the intracellular ATP/ADP ratio increased approximately two-fold compared to that of the wild-type strain.
引用
收藏
页码:2593 / 2604
页数:12
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