BACKGROUND: As computational performance steadily increases, so does interest in extending one-particle-per-molecule models to larger physiological problems. Such models however require elementary rate constants to calculate time-dependent rate coefficients under physiological conditions. Unfortunately, even when in vivo kinetic data is available, it is often in the form of aggregated rate laws (ARL) that do not specify the required elementary rate constants corresponding to mass-action rate laws (MRL). There is therefore a need to develop a method which is capable of automatically transforming ARL kinetic information into more detailed MRL rate constants. RESULTS: By incorporating proteomic data related to enzyme abundance into an MRL mode...
One of the great challenges in the post‐genomic era is to understand the dynamic behaviour of a liv...
In recent years, constraint-based approaches have been widely used for analyzing cellular metabolism...
Understanding the dynamic behavior of living organisms is a great challenge in systems biology. To ...
On rate law (MRL) for estimation of the elementary rate constants. The same procedure can be used to...
On rate law (MRL) for estimation of the elementary rate constants. The same procedure can be used to...
Detailed dynamic kinetic models at the network reaction level are traditionally constructed using m...
Metabolic engineering is attentive about the alteration properties of metabolic pathways with the po...
Enzyme kinetic constants in vivo are largely unknown, which limits the construction of large metabol...
Enzyme kinetic constants in vivo are largely unknown, which limits the construction of large metabol...
International audienceEnzyme kinetic constants in vivo are largely unknown, which limits the constru...
The construction of dynamic metabolic models at reaction network level requires the use of mechanist...
BackgroundThe mechanistic description of enzyme kinetics in a dynamic model of metabolism requires s...
BackgroundThe mechanistic description of enzyme kinetics in a dynamic model of metabolism requires s...
International audienceEnzyme kinetic constants in vivo are largely unknown, which limits the constru...
The construction of dynamic metabolic models at reaction network level requires the use of mechanist...
One of the great challenges in the post‐genomic era is to understand the dynamic behaviour of a liv...
In recent years, constraint-based approaches have been widely used for analyzing cellular metabolism...
Understanding the dynamic behavior of living organisms is a great challenge in systems biology. To ...
On rate law (MRL) for estimation of the elementary rate constants. The same procedure can be used to...
On rate law (MRL) for estimation of the elementary rate constants. The same procedure can be used to...
Detailed dynamic kinetic models at the network reaction level are traditionally constructed using m...
Metabolic engineering is attentive about the alteration properties of metabolic pathways with the po...
Enzyme kinetic constants in vivo are largely unknown, which limits the construction of large metabol...
Enzyme kinetic constants in vivo are largely unknown, which limits the construction of large metabol...
International audienceEnzyme kinetic constants in vivo are largely unknown, which limits the constru...
The construction of dynamic metabolic models at reaction network level requires the use of mechanist...
BackgroundThe mechanistic description of enzyme kinetics in a dynamic model of metabolism requires s...
BackgroundThe mechanistic description of enzyme kinetics in a dynamic model of metabolism requires s...
International audienceEnzyme kinetic constants in vivo are largely unknown, which limits the constru...
The construction of dynamic metabolic models at reaction network level requires the use of mechanist...
One of the great challenges in the post‐genomic era is to understand the dynamic behaviour of a liv...
In recent years, constraint-based approaches have been widely used for analyzing cellular metabolism...
Understanding the dynamic behavior of living organisms is a great challenge in systems biology. To ...