Metabolic robustness and network modularity: A model study
arXiv:1012.4256 · doi:10.1371/journal.pone.0016605
Abstract
[Background] Several studies have mentioned network modularity -- that a network can easily be decomposed into subgraphs that are densely connected within and weakly connected between each other -- as a factor affecting metabolic robustness. In this paper we measure the relation between network modularity and several aspects of robustness directly in a model system of metabolism. [Methodology/Principal Findings] By using a model for generating chemical reaction systems where one can tune the network modularity, we find that robustness increases with modularity for changes in the concentrations of metabolites, whereas it decreases with changes in the expression of enzymes. The same modularity scaling is true for the speed of relaxation after the perturbations. [Conclusions/Significance] Modularity is not a general principle for making metabolism either more or less robust; this question needs to be addressed specifically for different types of perturbations of the system.
References in corpus (4)
Cited by in corpus (6)
- Structure and dynamics of molecular networks: A novel paradigm of drug discovery. A comprehensive review
- Climatic seasonality may affect ecological network structure: Food webs and mutualistic networks
- Atmospheric reaction systems as null-models to identify structural traces of evolution in metabolism
- Modular organization of cancer signaling networks is associated with patient survivability
- Metabolic network modularity arising from simple growth processes
- Habitat variability does not generally promote metabolic network modularity in flies and mammals