Cells employ various mechanisms for dynamic control of enzyme expression. An important mechanism is mutual feedback-or crosstalk-between transcription and metabolism. As recently suggested, enzyme levels are often much higher than absolutely needed to maintain metabolic flux. However, given the potential burden of high enzyme levels it seems likely that cells control enzyme expression to meet other cellular objectives. In this review, we discuss whether crosstalk between metabolism and transcription could inform cells about how much enzyme is optimal for various fitness aspects. Two major problems should be addressed in order to understand optimization of enzyme levels by crosstalk. First, mapping of metabolite-protein interactions will be ...
A classic paradigm of gene regulation is the regulation of metabolic enzyme expression in response t...
Genome sequencing dramatically increased our ability to understand cellular response to perturbation...
Genome sequencing dramatically increased our ability to understand cellular response to perturbation...
textabstractCellular compartments are believed to serve functional separation within the cell and al...
Understanding cellular regulation of metabolism is a major challenge in systems biology. Thus far, t...
Understanding cellular regulation of metabolism is a major challenge in systems biology. Thus far, t...
Understanding cellular regulation of metabolism is a major challenge in systems biology. Thus far, t...
What is the relationship between enzymes and metabolites, the two major constituents of metabolic ne...
What is the relationship between enzymes and metabolites, the two major constituents of metabolic ne...
Genome-scale metabolic models are available for an increasing number of organisms and can be used to...
Experimental measurements or computational model predictions of the post-translational regulation of...
One of the marvels of biology is the phenotypic plasticity of microorganisms. It allows them to main...
One of the marvels of biology is the phenotypic plasticity of microorganisms. It allows them to main...
Background Transcriptional regulation of the genes in metabolic pathways is a highly successful stra...
One of the marvels of biology is the phenotypic plasticity of microorganisms. It allows them to main...
A classic paradigm of gene regulation is the regulation of metabolic enzyme expression in response t...
Genome sequencing dramatically increased our ability to understand cellular response to perturbation...
Genome sequencing dramatically increased our ability to understand cellular response to perturbation...
textabstractCellular compartments are believed to serve functional separation within the cell and al...
Understanding cellular regulation of metabolism is a major challenge in systems biology. Thus far, t...
Understanding cellular regulation of metabolism is a major challenge in systems biology. Thus far, t...
Understanding cellular regulation of metabolism is a major challenge in systems biology. Thus far, t...
What is the relationship between enzymes and metabolites, the two major constituents of metabolic ne...
What is the relationship between enzymes and metabolites, the two major constituents of metabolic ne...
Genome-scale metabolic models are available for an increasing number of organisms and can be used to...
Experimental measurements or computational model predictions of the post-translational regulation of...
One of the marvels of biology is the phenotypic plasticity of microorganisms. It allows them to main...
One of the marvels of biology is the phenotypic plasticity of microorganisms. It allows them to main...
Background Transcriptional regulation of the genes in metabolic pathways is a highly successful stra...
One of the marvels of biology is the phenotypic plasticity of microorganisms. It allows them to main...
A classic paradigm of gene regulation is the regulation of metabolic enzyme expression in response t...
Genome sequencing dramatically increased our ability to understand cellular response to perturbation...
Genome sequencing dramatically increased our ability to understand cellular response to perturbation...