High-throughput data generation and genome-scale stoichiometric models have greatly facilitated the comprehensive study of metabolic networks. The computation of all feasible metabolic routes with these models, given stoichiometric, thermodynamic, and steady-state constraints, provides important insights into the metabolic capacities of a cell. How the feasible metabolic routes emerge from the interplay between flux constraints, optimality objectives, and the entire metabolic network of a cell is, however, only partially understood. We show how optimal metabolic routes, resulting from flux balance analysis computations, arise out of elementary flux modes, constraints, and optimization objectives. We illustrate our findings with a genome-sca...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Specific product formation rates and cellular growth rates are important maximization targets in bio...
Motivation: Genome-scale metabolic networks can be modeled in a constraint-based fashion. Reaction s...
High-throughput data generation and genome-scale stoichiometric models have greatly facilitated the ...
<div><p>High-throughput data generation and genome-scale stoichiometric models have greatly facilita...
High-throughput data generation and genome-scale stoichiometric models have greatly facilitated the ...
High-throughput data generation and genome-scale stoichiometric models have greatly fa-cilitated the...
The metabolism of organisms can be studied with comprehensive stoichiometric models of their metabol...
The metabolism of organisms can be studied with comprehensive stoichiometric models of their metabol...
The metabolism of organisms can be studied with comprehensive stoichiometric models of their metabol...
The metabolism of organisms can be studied with comprehensive stoichiometric models of their metabol...
The metabolism of organisms can be studied with comprehensive stoichiometric models of their metabol...
Constraint-based optimization, such as flux balance analysis (FBA), has become a standard systems-bi...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Genome-scale stoichiometric modeling methods, in particular Flux Balance Analysis (FBA) and variatio...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Specific product formation rates and cellular growth rates are important maximization targets in bio...
Motivation: Genome-scale metabolic networks can be modeled in a constraint-based fashion. Reaction s...
High-throughput data generation and genome-scale stoichiometric models have greatly facilitated the ...
<div><p>High-throughput data generation and genome-scale stoichiometric models have greatly facilita...
High-throughput data generation and genome-scale stoichiometric models have greatly facilitated the ...
High-throughput data generation and genome-scale stoichiometric models have greatly fa-cilitated the...
The metabolism of organisms can be studied with comprehensive stoichiometric models of their metabol...
The metabolism of organisms can be studied with comprehensive stoichiometric models of their metabol...
The metabolism of organisms can be studied with comprehensive stoichiometric models of their metabol...
The metabolism of organisms can be studied with comprehensive stoichiometric models of their metabol...
The metabolism of organisms can be studied with comprehensive stoichiometric models of their metabol...
Constraint-based optimization, such as flux balance analysis (FBA), has become a standard systems-bi...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Genome-scale stoichiometric modeling methods, in particular Flux Balance Analysis (FBA) and variatio...
Understanding the organization of reaction fluxes in cellular metabolism from the stoichiometry and ...
Specific product formation rates and cellular growth rates are important maximization targets in bio...
Motivation: Genome-scale metabolic networks can be modeled in a constraint-based fashion. Reaction s...