Genome-scale network reconstruction has enabled predictive modeling of metabolism for many systems. Traditionally, protein structural information has not been represented in such reconstructions. Expansion of a genome-scale model of Escherichia coli metabolism by including experimental and predicted protein structures enabled the analysis of protein thermostability in a network context. This analysis allowed the prediction of protein activities that limit network function at superoptimal temperatures and mechanistic interpretations of mutations found in strains adapted to heat. Predicted growth-limiting factors for thermotolerance were validated through nutrient supplementation experiments and defined metabolic sensitivities to heat stress,...
Systems biology is an emerging field of research that utilizes high-throughput experimental data and...
Genome-scale metabolic models have become a fundamental tool for examining metabolic principles. How...
Protein folding is governed by a variety of molecular forces including hydrophobic and ionic interac...
BackgroundThe success of genome-scale models (GEMs) can be attributed to the high-quality, bottom-up...
BackgroundThe success of genome-scale models (GEMs) can be attributed to the high-quality, bottom-up...
Due to the relative prevalence and centrality of the proteome, it is unsurprising that a great numbe...
Due to the relative prevalence and centrality of the proteome, it is unsurprising that a great numbe...
Characterization of complex cellular behaviors on a molecular scale requires detailed understanding ...
Characterization of complex cellular behaviors on a molecular scale requires detailed understanding ...
The computational representation of metabolic networks has traditionally abstracted the representati...
The computational representation of metabolic networks has traditionally abstracted the representati...
Maintenance of a properly folded proteome is critical for bacterial survival at notably different gr...
The integration of omic data with metabolic networks has been demonstrated to be an effective approa...
International audienceBackground: Metabolic networks reflect the relationships between metabolites (...
The study of bacterial growth has highlighted the importance of metabolism in how microorganisms hav...
Systems biology is an emerging field of research that utilizes high-throughput experimental data and...
Genome-scale metabolic models have become a fundamental tool for examining metabolic principles. How...
Protein folding is governed by a variety of molecular forces including hydrophobic and ionic interac...
BackgroundThe success of genome-scale models (GEMs) can be attributed to the high-quality, bottom-up...
BackgroundThe success of genome-scale models (GEMs) can be attributed to the high-quality, bottom-up...
Due to the relative prevalence and centrality of the proteome, it is unsurprising that a great numbe...
Due to the relative prevalence and centrality of the proteome, it is unsurprising that a great numbe...
Characterization of complex cellular behaviors on a molecular scale requires detailed understanding ...
Characterization of complex cellular behaviors on a molecular scale requires detailed understanding ...
The computational representation of metabolic networks has traditionally abstracted the representati...
The computational representation of metabolic networks has traditionally abstracted the representati...
Maintenance of a properly folded proteome is critical for bacterial survival at notably different gr...
The integration of omic data with metabolic networks has been demonstrated to be an effective approa...
International audienceBackground: Metabolic networks reflect the relationships between metabolites (...
The study of bacterial growth has highlighted the importance of metabolism in how microorganisms hav...
Systems biology is an emerging field of research that utilizes high-throughput experimental data and...
Genome-scale metabolic models have become a fundamental tool for examining metabolic principles. How...
Protein folding is governed by a variety of molecular forces including hydrophobic and ionic interac...