Environmental fluctuations lead to a rapid adjustment of the physiology of Escherichia coli, necessitating changes on every level of the underlying cellular and molecular network. Thus far, the majority of global analyses of E. coli stress responses have been limited to just one level, gene expression. Here, we incorporate the metabolite composition together with gene expression data to provide a more comprehensive insight on system level stress adjustments by describing detailed time-resolved E. coli response to five different perturbations (cold, heat, oxidative stress, lactose diauxie, and stationary phase). The metabolite response is more specific as compared with the general response observed on the transcript level and is reflected by...
How do bacteria regulate their cellular physiology in response to starvation? Here, we present a det...
Modern systems biology requires extensive, carefully curated measurements of cellular components in ...
International audienceBacteria have to continuously adjust to nutrient fluctuations from favorable t...
Environmental fluctuations lead to a rapid adjustment of the physiology of Escherichia coli, necessi...
BACKGROUND:Biological systems adapt to changing environments by reorganizing their cellular and phys...
Background: Biological systems adapt to changing environments by reorganizing their cellular and phy...
Background: Biological systems adapt to changing environments by reorganizing their cellular and phy...
Background Changes in environmental conditions require temporal effectuation of different metabolic...
How do bacteria regulate their cellular physiology in response to starvation? Here, we present a det...
Background: Biological systems adapt to changing environments by reorganizing their cellular and phy...
Metabolism controls gene expression through allosteric interactions between metabolites and transcri...
How do bacteria regulate their cellular physiology in response to starvation? Here, we present a det...
How do bacteria regulate their cellular physiology in response to starvation? Here, we present a det...
Microbial metabolomic analysis is essential for understanding responses of microorganisms to heat st...
Abstract Current understanding of heat shock response has been complicated by the fact that heat str...
How do bacteria regulate their cellular physiology in response to starvation? Here, we present a det...
Modern systems biology requires extensive, carefully curated measurements of cellular components in ...
International audienceBacteria have to continuously adjust to nutrient fluctuations from favorable t...
Environmental fluctuations lead to a rapid adjustment of the physiology of Escherichia coli, necessi...
BACKGROUND:Biological systems adapt to changing environments by reorganizing their cellular and phys...
Background: Biological systems adapt to changing environments by reorganizing their cellular and phy...
Background: Biological systems adapt to changing environments by reorganizing their cellular and phy...
Background Changes in environmental conditions require temporal effectuation of different metabolic...
How do bacteria regulate their cellular physiology in response to starvation? Here, we present a det...
Background: Biological systems adapt to changing environments by reorganizing their cellular and phy...
Metabolism controls gene expression through allosteric interactions between metabolites and transcri...
How do bacteria regulate their cellular physiology in response to starvation? Here, we present a det...
How do bacteria regulate their cellular physiology in response to starvation? Here, we present a det...
Microbial metabolomic analysis is essential for understanding responses of microorganisms to heat st...
Abstract Current understanding of heat shock response has been complicated by the fact that heat str...
How do bacteria regulate their cellular physiology in response to starvation? Here, we present a det...
Modern systems biology requires extensive, carefully curated measurements of cellular components in ...
International audienceBacteria have to continuously adjust to nutrient fluctuations from favorable t...