• Title of article

    Global metabolic changes following loss of a feedback loop reveal dynamic steady states of the yeast metabolome

  • Author/Authors

    Lu، نويسنده , , Peng and Rangan، نويسنده , , Anupama and Chan، نويسنده , , Sherwin Y. and Appling، نويسنده , , Dean R. and Hoffman، نويسنده , , David W. and Marcotte، نويسنده , , Edward M.، نويسنده ,

  • Issue Information
    دوماهنامه با شماره پیاپی سال 2007
  • Pages
    13
  • From page
    8
  • To page
    20
  • Abstract
    Metabolic enzymes control cellular metabolite concentrations dynamically in response to changing environmental and intracellular conditions. Such real-time feedback regulation suggests the global metabolome may sample distinct dynamic steady states, forming “basins of stability” in the energy landscape of possible metabolite concentrations and enzymatic activities. Using metabolite, protein and transcriptional profiling, we characterize three dynamic steady states of the yeast metabolome that form by perturbing synthesis of the universal methyl donor S-adenosylmethionine (AdoMet). Conversion between these states is driven by replacement of serine with glycine+formate in the media, loss of feedback inhibition control by the metabolic enzyme Met13, or both. The latter causes hyperaccumulation of methionine and AdoMet, and dramatic global compensatory changes in the metabolome, including differences in amino acid and sugar metabolism, and possibly in the global nitrogen balance, ultimately leading to a G1/S phase cell cycle delay. Global metabolic changes are not necessarily accompanied by global transcriptional changes, and metabolite-controlled post-transcriptional regulation of metabolic enzymes is clearly evident.
  • Keywords
    One carbon metabolism , mass spectrometry , Metabolomics , Nuclear magnetic resonance , Metabolic Profiling
  • Journal title
    Metabolic Engineering
  • Serial Year
    2007
  • Journal title
    Metabolic Engineering
  • Record number

    1428674