Which properties of metabolic networks can be derived solely from stoichiometry? Predictive results have been obtained by flux balance analysis (FBA), by postulating that cells set metabolic fluxes to maximize growth rate. Here we consider a generalization of FBA to single-cell level using maximum entropy modeling, which we extend and test experimentally. Specifically, we define for Escherichia coli metabolism a flux distribution that yields the experimental growth rate: the model, containing FBA as a limit, provides a better match to measured fluxes and it makes a wide range of predictions: on flux variability, regulation, and correlations; on the relative importance of stoichiometry vs. optimization; on scaling relations for growth rate d...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Abstract Background Flux Balance Analysis (FBA) is a ...
In this work maximum entropy distributions in the space of steady states of metabolic networks are c...
Which properties of metabolic networks can be derived solely from stoichiometry? Predictive results ...
Motivation: Genome-scale metabolic networks can be modeled in a constraint-based fashion. Reaction s...
MOTIVATION: Genome-scale metabolic networks can be modeled in a constraint-based fashion. Reaction s...
The solution space of genome-scale models of cellular metabolism provides a map between physically v...
Constraint-based optimization, such as flux balance analysis (FBA), has become a standard systems-bi...
Genome-scale stoichiometric modeling methods, in particular Flux Balance Analysis (FBA) and variatio...
Viewing the ways a living cell can organize its metabolism as the phase space of a physical system, ...
The metabolism of organisms can be studied with comprehensive stoichiometric models of their metabol...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Stoichiometric models of metabolism, such as flux balance analysis (FBA), are classically applied to...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Abstract Background Flux Balance Analysis (FBA) is a ...
In this work maximum entropy distributions in the space of steady states of metabolic networks are c...
Which properties of metabolic networks can be derived solely from stoichiometry? Predictive results ...
Motivation: Genome-scale metabolic networks can be modeled in a constraint-based fashion. Reaction s...
MOTIVATION: Genome-scale metabolic networks can be modeled in a constraint-based fashion. Reaction s...
The solution space of genome-scale models of cellular metabolism provides a map between physically v...
Constraint-based optimization, such as flux balance analysis (FBA), has become a standard systems-bi...
Genome-scale stoichiometric modeling methods, in particular Flux Balance Analysis (FBA) and variatio...
Viewing the ways a living cell can organize its metabolism as the phase space of a physical system, ...
The metabolism of organisms can be studied with comprehensive stoichiometric models of their metabol...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Stoichiometric models of metabolism, such as flux balance analysis (FBA), are classically applied to...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Growth rate is a near-universal selective pressure across microbial species. High growth rates requi...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Abstract Background Flux Balance Analysis (FBA) is a ...
In this work maximum entropy distributions in the space of steady states of metabolic networks are c...