BACKGROUND: Cell growth underlies many key cellular and developmental processes, yet a limited number of studies have been carried out on cell-growth regulation. Comprehensive studies at the transcriptional, proteomic and metabolic levels under defined controlled conditions are currently lacking. RESULTS: Metabolic control analysis is being exploited in a systems biology study of the eukaryotic cell. Using chemostat culture, we have measured the impact of changes in flux (growth rate) on the transcriptome, proteome, endometabolome and exometabolome of the yeast Saccharomyces cerevisiae. Each functional genomic level shows clear growth-rate-associated trends and discriminates between carbon-sufficient and carbon-limited conditions. Genes con...
Cellular resources are limited and their relative allocation to gene expression programmes determine...
Genome sequencing dramatically increased our ability to understand cellular response to perturbation...
Saccharomyces cerevisiae is a widely used cell factory; therefore, it is important to understand how...
BACKGROUND: Cell growth underlies many key cellular and developmental processes, yet a limited numbe...
BACKGROUND: Cell growth underlies many key cellular and developmental processes, yet a limited numbe...
Background: Characterization of cellular growth is central to understanding living systems. Here, we...
We studied the relationship between growth rate and genome-wide gene expression, cell cycle progress...
<p><b>Background:</b> Characterization of cellular growth is central to understanding living systems...
Background: Growth rate is central to the development of cells in all organisms. However, little is ...
Abstract A recent article in BMC Biology illustrates the use of a systems-biology approach to integr...
In addition to controlled expression of genes by specific regulatory circuits, the abundance of prot...
Complex human diseases commonly arise from deregulation of cell growth, metabolism, and/or gene expr...
Cellular resources are limited and their relative allocation to gene expression programmes determine...
Genome sequencing dramatically increased our ability to understand cellular response to perturbation...
Genome sequencing dramatically increased our ability to understand cellular response to perturbation...
Cellular resources are limited and their relative allocation to gene expression programmes determine...
Genome sequencing dramatically increased our ability to understand cellular response to perturbation...
Saccharomyces cerevisiae is a widely used cell factory; therefore, it is important to understand how...
BACKGROUND: Cell growth underlies many key cellular and developmental processes, yet a limited numbe...
BACKGROUND: Cell growth underlies many key cellular and developmental processes, yet a limited numbe...
Background: Characterization of cellular growth is central to understanding living systems. Here, we...
We studied the relationship between growth rate and genome-wide gene expression, cell cycle progress...
<p><b>Background:</b> Characterization of cellular growth is central to understanding living systems...
Background: Growth rate is central to the development of cells in all organisms. However, little is ...
Abstract A recent article in BMC Biology illustrates the use of a systems-biology approach to integr...
In addition to controlled expression of genes by specific regulatory circuits, the abundance of prot...
Complex human diseases commonly arise from deregulation of cell growth, metabolism, and/or gene expr...
Cellular resources are limited and their relative allocation to gene expression programmes determine...
Genome sequencing dramatically increased our ability to understand cellular response to perturbation...
Genome sequencing dramatically increased our ability to understand cellular response to perturbation...
Cellular resources are limited and their relative allocation to gene expression programmes determine...
Genome sequencing dramatically increased our ability to understand cellular response to perturbation...
Saccharomyces cerevisiae is a widely used cell factory; therefore, it is important to understand how...