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Qualitative simulation of the carbon starvation response in Escherichia coli
Authors:Ropers Delphine  de Jong Hidde  Page Michel  Schneider Dominique  Geiselmann Johannes
Institution:1. Institut National de Recherche en Informatique et en Automatique (INRIA), Unité de recherche Rhône-Alpes, 655 Avenue de l’Europe, Montbonnot, 38334 Saint Ismier Cedex, France;2. Ecole Supérieure des Affaires, Université Pierre Mendès France, Grenoble, France;3. Laboratoire Adaptation et Pathogénie des Microorganismes (CNRS UMR 5163), Institut Jean Roget, Campus Santé, Université Joseph Fourier, Domaine de la Merci, 38700 La Tronche, France
Abstract:In case of nutritional stress, like carbon starvation, Escherichia coli cells abandon their exponential-growth state to enter a more resistant, non-growth state called stationary phase. This growth-phase transition is controlled by a genetic regulatory network integrating various environmental signals. Although E. coli is a paradigm of the bacterial world, it is little understood how its response to carbon starvation conditions emerges from the interactions between the different components of the regulatory network. Using a qualitative method that is able to overcome the current lack of quantitative data on kinetic parameters and molecular concentrations, we model the carbon starvation response network and simulate the response of E. coli cells to carbon deprivation. This allows us to identify essential features of the transition between exponential and stationary phase and to make new predictions on the qualitative system behavior following a carbon upshift.
Keywords:Qualitative modeling and simulation  Piecewise-linear differential equations  Genetic regulatory networks  Carbon starvation  Nutritional stress response  Escherichia coli
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