Redox controls metabolic robustness in the gas-fermenting acetogen Clostridium autoethanogenum

被引:54
|
作者
Mahamkali, Vishnuvardhan [1 ]
Valgepea, Kaspar [1 ,2 ]
Lemgruber, Renato de Souza Pinto [1 ]
Plan, Manuel [1 ,3 ]
Tappel, Ryan [4 ]
Kopke, Michael [4 ]
Simpson, Sean Dennis [4 ]
Nielsen, Lars Keld [1 ,3 ,5 ]
Marcellin, Esteban [1 ,3 ]
机构
[1] Univ Queensland, Australian Inst Bioengn & Nanotechnol, Brisbane, Qld 4072, Australia
[2] Univ Tartu, Inst Technol, ERA Chair Gas Fermentat Technol, EE-50411 Tartu, Estonia
[3] Univ Queensland, Queensland Node Metabol Australia, Brisbane, Qld 4072, Australia
[4] LanzaTech Inc, Skokie, IL 60077 USA
[5] Tech Univ Denmark, Novo Nordisk Fdn Ctr Biosustainabil, DK-2800 Lyngby, Denmark
基金
澳大利亚研究理事会;
关键词
metabolic robustness; oscillations; acetogen; gas fermentation; WoodLjungdahl pathway; SACCHAROMYCES-CEREVISIAE; ENERGY-METABOLISM; ESCHERICHIA-COLI; PATHWAY; CARBON; MODEL; OSCILLATIONS; MECHANISM; CULTURE; CYCLE;
D O I
10.1073/pnas.1919531117
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Living biological systems display a fascinating ability to self-organize their metabolism. This ability ultimately determines the metabolic robustness that is fundamental to controlling cellular behavior. However, fluctuations in metabolism can affect cellular homeostasis through transient oscillations. For example, yeast cul-tures exhibit rhythmic oscillatory behavior in high cell-density con-tinuous cultures. Oscillatory behavior provides a unique opportunity for quantitating the robustness of metabolism, as cells respond to changes by inherently compromising metabolic efficiency. Here, we quantify the limits of metabolic robustness in self-oscillating auto-trophic continuous cultures of the gas-fermenting acetogen Clostrid-ium autoethanogenum . Online gas analysis and high-resolution temporal metabolomics showed oscillations in gas uptake rates and extracellular byproducts synchronized with biomass levels. The data show initial growth on CO, followed by growth on CO and H-2 . Growth on CO and H-2 results in an accelerated growth phase, after which a downcycle is observed in synchrony with a loss in H-2 uptake. In-triguingly, oscillations are not linked to translational control, as no differences were observed in protein expression during oscillations. In-tracellular metabolomics analysis revealed decreasing levels of re-dox ratios in synchrony with the cycles. We then developed a thermodynamic metabolic flux analysis model to investigate whether regulation in acetogens is controlled at the thermody-namic level. We used endo-and exo-metabolomics data to show that the thermodynamic driving force of critical reactions collapsed as H-2 uptake is lost. The oscillations are coordinated with redox. The data indicate that metabolic oscillations in ace-togen gas fermentation are controlled at the thermodynamic level.
引用
收藏
页码:13168 / 13175
页数:8
相关论文
共 20 条
  • [1] Absolute Proteome Quantification in the Gas-Fermenting Acetogen Clostridium autoethanogenum
    Valgepea, Kaspar
    Talbo, Gert
    Takemori, Nobuaki
    Takemori, Ayako
    Ludwig, Christina
    Mahamkali, Vishnuvardhan
    Mueller, Alexander P.
    Tappel, Ryan
    Kopke, Michael
    Simpson, Sean Dennis
    Nielsen, Lars Keld
    Marcellin, Esteban
    MSYSTEMS, 2022, 7 (02)
  • [2] Arginine deiminase pathway provides ATP and boosts growth of the gas-fermenting acetogen Clostridium autoethanogenum
    Valgepea, Kaspar
    Loi, Kim Q.
    Behrendorff, James B.
    Lemgruber, Renato de S. P.
    Plan, Manuel
    Hodson, Mark P.
    Koepke, Michael
    Nielsen, Lars K.
    Marcellin, Esteban
    METABOLIC ENGINEERING, 2017, 41 : 202 - 211
  • [3] Autotrophic adaptive laboratory evolution of the acetogen Clostridium autoethanogenum delivers the gas-fermenting strain LAbrini with superior growth, products, and robustness
    Ingelman, Henri
    Heffernan, James K.
    Harris, Audrey
    Brown, Steven D.
    Shaikh, Kurshedaktar Majibullah
    Saqib, Asfand Yar
    Pinheiro, Marina J.
    de Lima, Lorena Azevedo
    Martinez, Karen Rodriguez
    Gonzalez-Garcia, RicardoA.
    Hawkins, Grant
    Daleiden, Jim
    Tran, Loan
    Zeleznik, Hunter
    Jensen, Rasmus O.
    Reynoso, Vinicio
    Schindel, Heidi
    Janes, Juergen
    Simpson, Sean D.
    Kopke, Michael
    Marcellin, Esteban
    Valgepea, Kaspar
    NEW BIOTECHNOLOGY, 2024, 83 : 1 - 15
  • [4] H2 drives metabolic rearrangements in gas-fermenting Clostridium autoethanogenum
    Valgepea, Kaspar
    Lemgruber, Renato de Souza Pinto
    Abdalla, Tanus
    Binos, Steve
    Takemori, Nobuaki
    Takemori, Ayako
    Tanaka, Yuki
    Tappel, Ryan
    Kopke, Michael
    Simpson, Sean Dennis
    Nielsen, Lars Keld
    Marcellin, Esteban
    BIOTECHNOLOGY FOR BIOFUELS, 2018, 11
  • [5] H2 drives metabolic rearrangements in gas-fermenting Clostridium autoethanogenum
    Kaspar Valgepea
    Renato de Souza Pinto Lemgruber
    Tanus Abdalla
    Steve Binos
    Nobuaki Takemori
    Ayako Takemori
    Yuki Tanaka
    Ryan Tappel
    Michael Köpke
    Séan Dennis Simpson
    Lars Keld Nielsen
    Esteban Marcellin
    Biotechnology for Biofuels, 11
  • [6] Metabolic Engineering Interventions for Sustainable 2,3-Butanediol Production in Gas-Fermenting Clostridium autoethanogenum
    Ghadermazi, Parsa
    Re, Angela
    Ricci, Luca
    Chan, Siu Hung Joshua
    MSYSTEMS, 2022, 7 (02)
  • [7] Kinetic ensemble model of gas fermenting Clostridium autoethanogenum for improved ethanol production
    Greene, Jennifer
    Daniell, James
    Kopke, Michael
    Broadbelt, Linda
    Tyo, Keith E. J.
    BIOCHEMICAL ENGINEERING JOURNAL, 2019, 148 : 46 - 56
  • [8] Engineering Clostridium ljungdahlii as the gas-fermenting cell factory for the production of biofuels and biochemicals
    Zhang, Lu
    Zhao, Ran
    Jia, Dechen
    Jiang, Weihong
    Gu, Yang
    CURRENT OPINION IN CHEMICAL BIOLOGY, 2020, 59 : 54 - 61
  • [9] Maintenance of ATP Homeostasis Triggers Metabolic Shifts in Gas-Fermenting Acetogens
    Valgepea, Kaspar
    Lemgruber, Renato de Souza Pinto
    Meaghan, Kieran
    Palfreyman, Robin William
    Abdalla, Tanus
    Heijstra, Bjom Daniel
    Behrendorff, James Bruce
    Tappel, Ryan
    Kopke, Michael
    Simpson, Sean Dennis
    Nielsen, Lars Keld
    Marcellin, Esteban
    CELL SYSTEMS, 2017, 4 (05) : 505 - +
  • [10] Metabolic Engineering of Gas-Fermenting Clostridium ljungdahlii for Efficient Co-production of Isopropanol, 3-Hydroxybutyrate, and Ethanol
    Jia, Dechen
    He, Meiyu
    Tian, Yi
    Shen, Shaohuang
    Zhu, Xianfeng
    Wang, Yonghong
    Zhuang, Yingping
    Jiang, Weihong
    Gu, Yang
    ACS SYNTHETIC BIOLOGY, 2021, 10 (10): : 2628 - 2638