[HTML][HTML] Modeling the Contribution of Allosteric Regulation for Flux Control in the Central Carbon Metabolism of E. coli

D Machado, MJ Herrgård, I Rocha - Frontiers in bioengineering and …, 2015 - frontiersin.org
Modeling cellular metabolism is fundamental for many biotechnological applications,
including drug discovery and rational cell factory design. Central carbon metabolism (CCM) …

Modeling the contribution of allosteric regulation for flux control in the central carbon metabolism of E. coli

D Machado, MJ Herrgård, I Rocha - Current Challenges in …, 2016 - books.google.com
Modeling cellular metabolism is fundamental for many biotechnological applications,
including drug discovery and rational cell factory design. Central carbon metabolism (CCM) …

[PDF][PDF] Modeling the contribution of allosteric regulation for flux control in the central carbon metabolism of E. coli

D Machado, MJ Herrgård, I Rocha - Current Challenges in Modeling …, 2016 - academia.edu
Modeling cellular metabolism is fundamental for many biotechnological applications,
including drug discovery and rational cell factory design. Central carbon metabolism (CCM) …

Modeling the Contribution of Allosteric Regulation for Flux Control in the Central Carbon Metabolism of E. coli.

D Machado, MJ Herrgård, I Rocha - Frontiers in Bioengineering and …, 2015 - europepmc.org
Modeling cellular metabolism is fundamental for many biotechnological applications,
including drug discovery and rational cell factory design. Central carbon metabolism (CCM) …

[HTML][HTML] Modeling the Contribution of Allosteric Regulation for Flux Control in the Central Carbon Metabolism of E. coli

D Machado, MJ Herrgård, I Rocha - Frontiers in Bioengineering …, 2015 - ncbi.nlm.nih.gov
Modeling cellular metabolism is fundamental for many biotechnological applications,
including drug discovery and rational cell factory design. Central carbon metabolism (CCM) …

Modeling the Contribution of Allosteric Regulation for Flux Control in the Central Carbon Metabolism of E. coli

D Machado, MJ Herrgård… - … in bioengineering and …, 2015 - pubmed.ncbi.nlm.nih.gov
Modeling cellular metabolism is fundamental for many biotechnological applications,
including drug discovery and rational cell factory design. Central carbon metabolism (CCM) …

[PDF][PDF] Modeling the contribution of allosteric regulation for flux control in the central carbon metabolism of E. coli

D Machado, MJ Herrgård, I Rocha - Front. Bioeng. Biotechnol. 3: 154. doi …, 2015 - core.ac.uk
Modeling cellular metabolism is fundamental for many biotechnological applications,
including drug discovery and rational cell factory design. Central carbon metabolism (CCM) …

[引用][C] Modeling the Contribution of Allosteric Regulation for Flux Control in the Central Carbon Metabolism of E. coli

D Machado, MJ Herrgård, I Rocha - Frontiers in Bioengineering and …, 2015 - cir.nii.ac.jp
Modeling the Contribution of Allosteric Regulation for Flux Control in the Central Carbon
Metabolism of E. coli | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ] 詳細 …

Modeling the Contribution of Allosteric Regulation for Flux Control in the Central Carbon Metabolism of E. coli

D Machado, M Herrgard, I Rocha - Frontiers in Bioengineering and …, 2015 - orbit.dtu.dk
Modeling cellular metabolism is fundamental for many biotechnological applications,
including drug discovery and rational cell factory design. Central carbon metabolism (CCM) …

[PDF][PDF] Modeling the contribution of allosteric regulation for flux control in the central carbon metabolism of E. coli

D Machado, MJ Herrgård, I Rocha - Current Challenges in Modeling …, 2016 - core.ac.uk
Modeling cellular metabolism is fundamental for many biotechnological applications,
including drug discovery and rational cell factory design. Central carbon metabolism (CCM) …