Item does not contain fulltextThe promise of proteomics and fluxomics is limited by our current inability to integrate these two levels of cellular organization. Here we present the derivation, experimental parameterization, and appraisal of flux functions that enable the quantitative prediction of changes in metabolic fluxes from changes in enzyme levels. We based our derivation on the hypothesis that, in the determination of steady-state flux changes, the direct proportionality between enzyme concentrations and reaction rates is principal, whereas the complexity of enzyme-metabolite interactions is secondary and can be described using an approximate kinetic format. The quality of the agreement between predicted and experimental fluxes in ...
AbstractConstraint-based methods provide powerful computational techniques to allow understanding an...
One of the goals of Systems Biology is to develop and utilise high-throughput methods for the measur...
Metabolism is a fundamental biochemical process that enables all organisms to operate and grow by co...
The promise of proteomics and fluxomics is limited by our current inability to integrate these two l...
Significant advances in system-level modeling of cellular behavior can be achieved based on constrai...
Prediction of possible flux distributions in a metabolic network provides detailed phenotypic inform...
Flux balance analysis (FBA) of a genome-scale metabolic model allows calculation of intracellular fl...
Genomics approaches aimed at understanding metabolism Currently tend to involve mainly expression pr...
Prediction of possible flux distributions in a metabolic network provides detailed phenotypic inform...
One of the great challenges in the post‐genomic era is to understand the dynamic behaviour of a liv...
Prediction of possible flux distributions in a metabolic network provides detailed phenotypic inform...
Motivation: Metabolic flux balance analysis (FBA) is a standard tool in analyzing metabolic reaction...
Motivation: Genome-scale metabolic networks can be modeled in a constraint-based fashion. Reaction s...
Constraint-based modeling approaches allow the estimation of maximal in vivo enzyme catalytic rates ...
MOTIVATION: Genome-scale metabolic networks can be modeled in a constraint-based fashion. Reaction s...
AbstractConstraint-based methods provide powerful computational techniques to allow understanding an...
One of the goals of Systems Biology is to develop and utilise high-throughput methods for the measur...
Metabolism is a fundamental biochemical process that enables all organisms to operate and grow by co...
The promise of proteomics and fluxomics is limited by our current inability to integrate these two l...
Significant advances in system-level modeling of cellular behavior can be achieved based on constrai...
Prediction of possible flux distributions in a metabolic network provides detailed phenotypic inform...
Flux balance analysis (FBA) of a genome-scale metabolic model allows calculation of intracellular fl...
Genomics approaches aimed at understanding metabolism Currently tend to involve mainly expression pr...
Prediction of possible flux distributions in a metabolic network provides detailed phenotypic inform...
One of the great challenges in the post‐genomic era is to understand the dynamic behaviour of a liv...
Prediction of possible flux distributions in a metabolic network provides detailed phenotypic inform...
Motivation: Metabolic flux balance analysis (FBA) is a standard tool in analyzing metabolic reaction...
Motivation: Genome-scale metabolic networks can be modeled in a constraint-based fashion. Reaction s...
Constraint-based modeling approaches allow the estimation of maximal in vivo enzyme catalytic rates ...
MOTIVATION: Genome-scale metabolic networks can be modeled in a constraint-based fashion. Reaction s...
AbstractConstraint-based methods provide powerful computational techniques to allow understanding an...
One of the goals of Systems Biology is to develop and utilise high-throughput methods for the measur...
Metabolism is a fundamental biochemical process that enables all organisms to operate and grow by co...