Effective coordination of cellular processes is critical to ensure the competitive growth of microbial organisms. Pivotal to this coordination is the appropriate partitioning of cellular resources between protein synthesis via translation and the metabolism needed to sustain it. Here, we extend a low-dimensional allocation model to describe the dynamic regulation of this resource partitioning. At the core of this regulation is the optimal coordination of metabolic and translational fluxes, mechanistically achieved via the perception of charged- and uncharged-tRNA turnover. An extensive comparison with ≈ 60 data sets from Escherichia coli establishes this regulatory mechanism's biological veracity and demonstrates that a remarkably wide rang...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Recent time-lapse microscopy experiments on bacterial growth have shown large cell-to-cell variation...
International audienceMicrobial physiology exhibits growth laws that relate the macromolecular compo...
A grand challenge of systems biology is to predict the kinetic responses of living systems to pertur...
Microbial cells evolved a remarkable ability to adapt to environmental conditions, or to withstand o...
<div><p>New experimental results on bacterial growth inspire a novel top-down approach to study cell...
New experimental results on bacterial growth inspire a novel top-down approach to study cell metabol...
New experimental results on bacterial growth inspire a novel top-down approach to study cell metabol...
The growth rate should be a highly optimized process in bacteria since the battle for the conquest o...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Which properties of metabolic networks can be derived solely from stoichiometry? Predictive results ...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Background The rising consensus that the cell can dynamically allocate its resources provides an int...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Most proteins show changes in level across growth conditions. Many of these changes seem to be coord...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Recent time-lapse microscopy experiments on bacterial growth have shown large cell-to-cell variation...
International audienceMicrobial physiology exhibits growth laws that relate the macromolecular compo...
A grand challenge of systems biology is to predict the kinetic responses of living systems to pertur...
Microbial cells evolved a remarkable ability to adapt to environmental conditions, or to withstand o...
<div><p>New experimental results on bacterial growth inspire a novel top-down approach to study cell...
New experimental results on bacterial growth inspire a novel top-down approach to study cell metabol...
New experimental results on bacterial growth inspire a novel top-down approach to study cell metabol...
The growth rate should be a highly optimized process in bacteria since the battle for the conquest o...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Which properties of metabolic networks can be derived solely from stoichiometry? Predictive results ...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Background The rising consensus that the cell can dynamically allocate its resources provides an int...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Most proteins show changes in level across growth conditions. Many of these changes seem to be coord...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Recent time-lapse microscopy experiments on bacterial growth have shown large cell-to-cell variation...
International audienceMicrobial physiology exhibits growth laws that relate the macromolecular compo...