Constraint-based metabolic models are currently the most comprehensive system-wide models of cellular metabolism. Several challenges arise when building an in silico constraint-based model of an organism that need to be addressed before flux balance analysis (FBA) can be applied for simulations. An algorithm called FBA-Gap is presented here that aids the construction of a working model based on plausible modifications to a given list of reactions that are known to occur in the organism. When applied to a working model, the algorithm gives a hypothesis concerning a minimal medium for sustaining the cell in culture. The utility of the algorithm is demonstrated in creating a new model organism and is applied to four existing working models for...
As genome-scale metabolic reconstructions emerge, tools to manage their size and complexity will be ...
network models and constraint-based methods The genome scale metabolic models of E. coli (iAF1260 [1...
Contains fulltext : 152194.PDF (publisher's version ) (Open Access)MOTIVATION: Gen...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
Constraint-based models are currently the only methodology that allows the study of metabolism at th...
Microbial cells evolved a remarkable ability to adapt to environmental conditions, or to withstand o...
The concept of metabolic models with resource allocation constraints has been around for over a deca...
Genome-scale stoichiometric modeling methods, in particular Flux Balance Analysis (FBA) and variatio...
Genome-scale reconstructions are usually stoichiometric and analyzed under steady-state assumptions ...
Background:Metabolic reconstruction is the computational-based process that aims to elucidate the ne...
Background: Metabolic reconstruction is the computational-based process that aims to elucidate the n...
Quite generally, constraint-based metabolic flux analysis describes the space of viable flux configu...
Constraint based modelling methods, such as Flux Balance Analysis (FBA), have been extensively used ...
We present an automated procedure of identifying and filling of reaction gaps in genome-scale metabo...
Systems level modelling and simulations of biological processes are proving to be invaluable in ob...
As genome-scale metabolic reconstructions emerge, tools to manage their size and complexity will be ...
network models and constraint-based methods The genome scale metabolic models of E. coli (iAF1260 [1...
Contains fulltext : 152194.PDF (publisher's version ) (Open Access)MOTIVATION: Gen...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
Constraint-based models are currently the only methodology that allows the study of metabolism at th...
Microbial cells evolved a remarkable ability to adapt to environmental conditions, or to withstand o...
The concept of metabolic models with resource allocation constraints has been around for over a deca...
Genome-scale stoichiometric modeling methods, in particular Flux Balance Analysis (FBA) and variatio...
Genome-scale reconstructions are usually stoichiometric and analyzed under steady-state assumptions ...
Background:Metabolic reconstruction is the computational-based process that aims to elucidate the ne...
Background: Metabolic reconstruction is the computational-based process that aims to elucidate the n...
Quite generally, constraint-based metabolic flux analysis describes the space of viable flux configu...
Constraint based modelling methods, such as Flux Balance Analysis (FBA), have been extensively used ...
We present an automated procedure of identifying and filling of reaction gaps in genome-scale metabo...
Systems level modelling and simulations of biological processes are proving to be invaluable in ob...
As genome-scale metabolic reconstructions emerge, tools to manage their size and complexity will be ...
network models and constraint-based methods The genome scale metabolic models of E. coli (iAF1260 [1...
Contains fulltext : 152194.PDF (publisher's version ) (Open Access)MOTIVATION: Gen...