New methods are needed for large scale modeling of metabolism that predict metabolite levels and characterize the thermodynamics of individual reactions and pathways. Current approaches use either kinetic simulations, which are difficult to extend to large networks of reactions because of the need for rate constants, or flux-based methods, which have a large number of feasible solutions because they are unconstrained by the law of mass action. This report presents an alternative modeling approach based on statistical thermodynamics. The principles of this approach are demonstrated using a simple set of coupled reactions, and then the system is characterized with respect to the changes in energy, entropy, free energy, and entropy production....
We report the application of a recently proposed approach for modeling biological systems using a ma...
Thermodynamically constrained stoichiometric-based models have been widely used for the estimation o...
78 pagesMetabolism is a process by which organisms extract energy from its environment to power i...
New methods are needed for large scale modeling of metabolism that predict metabolite levels and cha...
The quantitative analysis of biochemical reactions and metabolites is at frontier of biological scie...
AbstractGenome-scale metabolic models are an invaluable tool for analyzing metabolic systems as they...
Thermodynamic metabolic flux analysis (TMFA) can narrow down the space of steady-state flux distribu...
Systematic analysis for the redirection of carbon flux in metabolite-producing microorganisms requir...
The principles governing metabolic flux are poorly understood. Because diverse organisms show simila...
Genome-scale metabolic models are an invaluable tool for analyzing metabolic systems as they provide...
Motivation: The laws of thermodynamics describe a direct, quantitative relationship between metaboli...
AbstractA new form of metabolic flux analysis (MFA) called thermodynamics-based metabolic flux analy...
To translate metabolic networks into dynamic models, the Structural Kinetic Modelling framework (SKM...
AbstractConstraint-based methods provide powerful computational techniques to allow understanding an...
Precise information about kinetic properties of enzymes within a biochemical network is a necessary ...
We report the application of a recently proposed approach for modeling biological systems using a ma...
Thermodynamically constrained stoichiometric-based models have been widely used for the estimation o...
78 pagesMetabolism is a process by which organisms extract energy from its environment to power i...
New methods are needed for large scale modeling of metabolism that predict metabolite levels and cha...
The quantitative analysis of biochemical reactions and metabolites is at frontier of biological scie...
AbstractGenome-scale metabolic models are an invaluable tool for analyzing metabolic systems as they...
Thermodynamic metabolic flux analysis (TMFA) can narrow down the space of steady-state flux distribu...
Systematic analysis for the redirection of carbon flux in metabolite-producing microorganisms requir...
The principles governing metabolic flux are poorly understood. Because diverse organisms show simila...
Genome-scale metabolic models are an invaluable tool for analyzing metabolic systems as they provide...
Motivation: The laws of thermodynamics describe a direct, quantitative relationship between metaboli...
AbstractA new form of metabolic flux analysis (MFA) called thermodynamics-based metabolic flux analy...
To translate metabolic networks into dynamic models, the Structural Kinetic Modelling framework (SKM...
AbstractConstraint-based methods provide powerful computational techniques to allow understanding an...
Precise information about kinetic properties of enzymes within a biochemical network is a necessary ...
We report the application of a recently proposed approach for modeling biological systems using a ma...
Thermodynamically constrained stoichiometric-based models have been widely used for the estimation o...
78 pagesMetabolism is a process by which organisms extract energy from its environment to power i...