Metabolomics

Dataset Information

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Homeostasis of the biosynthetic E. coli metabolome


ABSTRACT: Metabolite concentrations vary across conditions and such metabolome changes are relevant for metabolic and gene regulation. Here, we used LC-MS/MS to explore metabolite concentration changes in Escherichia coli. We measured 101 primary metabolites in 19 experimental conditions that include various nutrients and stresses. Many metabolites showed little variation across conditions and only few metabolites correlated with the growth rate. The least varying metabolites were nucleotides (e.g. UTP had 10% variation) and amino acids (e.g. methionine had 13% variation). These results show that E. coli maintains protein and RNA building blocks within narrow concentration ranges, thus indicating that many feedback mechanisms in biosynthetic pathways contribute to end-product homeostasis.

INSTRUMENT(S): Liquid Chromatography MS – HILIC, Liquid Chromatography MS - HILIC

PROVIDER: MTBLS4249 | MetaboLights | 2022-11-02

REPOSITORIES: MetaboLights

Dataset's files

Source:
Action DRS
AA_BW25113_1Aquity001P5D10.d.zip Other
AA_BW25113_1Aquity002P5D10.d.zip Other
AA_BW25113_1Aquity003P5D10.d.zip Other
AA_BW25113_1iHILIC001P5E1.d.zip Other
AA_BW25113_1iHILIC002P5E1.d.zip Other
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Publications

Homeostasis of the biosynthetic <i>E. coli</i> metabolome.

Radoš Dušica D   Donati Stefano S   Lempp Martin M   Rapp Johanna J   Link Hannes H  

iScience 20220602 7


Metabolite concentrations vary across conditions and such metabolome changes are relevant for metabolic and gene regulation. Here, we used LC-MS/MS to explore metabolite concentration changes in <i>Escherichia coli</i>. We measured 101 primary metabolites in 19 experimental conditions that include various nutrients and stresses. Many metabolites showed little variation across conditions and only few metabolites correlated with the growth rate. The least varying metabolites were nucleotides (e.g.  ...[more]

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