Global coordination of metabolic pathways in Escherichia coli by active and passive regulation

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Date
2021-04-01Type
- Journal Article
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Cited 9 times in
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Cited 10 times in
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Abstract
Microorganisms adjust metabolic activity to cope with diverse environments. While many studies have provided insights into how individual pathways are regulated, the mechanisms that give rise to coordinated metabolic responses are poorly understood. Here, we identify the regulatory mechanisms that coordinate catabolism and anabolism in Escherichia coli. Integrating protein, metabolite, and flux changes in genetically implemented catabolic or anabolic limitations, we show that combined global and local mechanisms coordinate the response to metabolic limitations. To allocate proteomic resources between catabolism and anabolism, E. coli uses a simple global gene regulatory program. Surprisingly, this program is largely implemented by a single transcription factor, Crp, which directly activates the expression of catabolic enzymes and indirectly reduces the expression of anabolic enzymes by passively sequestering cellular resources needed for their synthesis. However, metabolic fluxes are not controlled by this regulatory program alone; instead, fluxes are adjusted mostly through passive changes in the local metabolite concentrations. These mechanisms constitute a simple but effective global regulatory program that coarsely partitions resources between different parts of metabolism while ensuring robust coordination of individual metabolic reactions. Show more
Permanent link
https://doi.org/10.3929/ethz-b-000480368Publication status
publishedExternal links
Journal / series
Molecular Systems BiologyVolume
Pages / Article No.
Publisher
EMBO PressSubject
13C flux analysis; Crp; metabolomics; proteomics; regulation analysisOrganisational unit
03713 - Sauer, Uwe / Sauer, Uwe
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Show all metadata
Citations
Cited 9 times in
Web of Science
Cited 10 times in
Scopus
ETH Bibliography
yes
Altmetrics