Metabolite Sequestration Enables Rapid Recovery from Fatty Acid Depletion in Escherichia coli

被引:14
|
作者
Hartline, Christopher J. [1 ]
Mannan, Ahmad A. [2 ,3 ]
Liu, Di [1 ]
Zhang, Fuzhong [1 ]
Oyarzun, Diego A. [4 ,5 ]
机构
[1] Washington Univ, Dept Energy Environm & Chem Engn, St Louis, MO 63110 USA
[2] Univ Warwick, Warwick Integrat Synthet Biol Ctr, Coventry, W Midlands, England
[3] Univ Warwick, Sch Engn, Coventry, W Midlands, England
[4] Univ Edinburgh, Sch Informat, Edinburgh, Midlothian, Scotland
[5] Univ Edinburgh, Sch Biol Sci, Edinburgh, Midlothian, Scotland
来源
MBIO | 2020年 / 11卷 / 02期
基金
美国国家科学基金会;
关键词
metabolic dynamics; metabolic regulation; synthetic biology; transcription factor; GENE-EXPRESSION; TRANSCRIPTION-FACTOR; ACYL-COENZYME; DESIGN; PRINCIPLES; BINDING; FADR;
D O I
10.1128/mBio.03112-19
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Microbes adapt their metabolism to take advantage of nutrients in their environment. Such adaptations control specific metabolic pathways to match energetic demands with nutrient availability. Upon depletion of nutrients, rapid pathway recovery is key to release cellular resources required for survival under the new nutritional conditions. Yet, little is known about the regulatory strategies that microbes employ to accelerate pathway recovery in response to nutrient depletion. Using the fatty acid catabolic pathway in Escherichia coh, here, we show that fast recovery can be achieved by rapid release of a transcriptional regulator from a metabolite-sequestered complex. With a combination of mathematical modeling and experiments, we show that recovery dynamics depend critically on the rate of metabolite consumption and the exposure time to nutrients. We constructed strains with rewired transcriptional regulatory architectures that highlight the metabolic benefits of negative autoregulation over constitutive and positive autoregulation. Our results have wide-ranging implications for our understanding of metabolic adaptations, as well as for guiding the design of gene circuitry for synthetic biology and metabolic engineering. IMPORTANCE Rapid metabolic recovery during nutrient shift is critical to microbial survival, cell fitness, and competition among microbiota, yet little is known about the regulatory mechanisms of rapid metabolic recovery. This work demonstrates a previously unknown mechanism where rapid release of a transcriptional regulator from a metabolite-sequestered complex enables fast recovery to nutrient depletion. The work identified key regulatory architectures and parameters that control the speed of recovery, with wide-ranging implications for the understanding of metabolic adaptations as well as synthetic biology and metabolic engineering.
引用
收藏
页数:11
相关论文
共 50 条
  • [1] Rapid acid treatment of Escherichia coli: transcriptomic response and recovery
    Geetha Kannan
    Jessica C Wilks
    Devon M Fitzgerald
    Brian D Jones
    Sandra S BonDurant
    Joan L Slonczewski
    BMC Microbiology, 8
  • [2] Rapid acid treatment of Escherichia coli:: transcriptomic response and recovery
    Kannan, Geetha
    Wilks, Jessica C.
    Fitzgerald, Devon M.
    Jones, Brian D.
    BonDurant, Sandra S.
    Slonczewski, Joan L.
    BMC MICROBIOLOGY, 2008, 8 (1)
  • [3] RAPID RECOVERY OF ESCHERICHIA-COLI FROM ESTUARINE WATER
    ANDREWS, WH
    PRESNELL, MW
    APPLIED MICROBIOLOGY, 1972, 23 (03) : 521 - &
  • [4] FATTY ACID REPLACEMENTS IN A FATTY ACID AUXOTROPH OF ESCHERICHIA COLI
    SILBERT, DF
    RUCH, F
    VAGELOS, PR
    JOURNAL OF BACTERIOLOGY, 1968, 95 (05) : 1658 - &
  • [5] FATTY ACID SYNTHESIS IN ESCHERICHIA COLI
    KNIVETT, VA
    CULLEN, J
    BIOCHEMICAL JOURNAL, 1967, 103 (02) : 299 - &
  • [6] EVALUATION OF A MEDIUM FOR RAPID RECOVERY OF ESCHERICHIA-COLI FROM SHELLFISH
    ANDREWS, WH
    DIGGS, CD
    WILSON, CR
    APPLIED MICROBIOLOGY, 1975, 29 (01) : 130 - 131
  • [7] Escherichia coli cyclopropane fatty acid synthase
    Courtois, F
    Guérard, C
    Thomas, X
    Ploux, O
    EUROPEAN JOURNAL OF BIOCHEMISTRY, 2004, 271 (23-24): : 4769 - 4778
  • [8] INFLUENCE OF UNSATURATED FATTY-ACID MEMBRANE COMPONENT ON SENSITIVITY OF AN ESCHERICHIA-COLI FATTY-ACID AUXOTROPH TO CONDITIONS OF NUTRIENT DEPLETION
    MASSA, EM
    VINALS, AL
    FARIAS, RN
    APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1988, 54 (08) : 2107 - 2111
  • [10] High production of fatty alcohols in Escherichia coli with fatty acid starvation
    Liu, Yilan
    Chen, Sha
    Chen, Jinjin
    Zhou, Jiemin
    Wang, Yanyan
    Yang, Maohua
    Qi, Xianni
    Xing, Jianmin
    Wang, Qinhong
    Ma, Yanhe
    MICROBIAL CELL FACTORIES, 2016, 15