The diversity of industrially important molecules for which microbial production routes have been experimentally demonstrated is rapidly increasing. The development of economically viable producer cells is, however, lagging behind, as it requires substantial engineering of the host metabolism. A chassis strain suitable for production of a range of molecules is therefore highly sought after but remains elusive. Here, we propose a genome-scale metabolic modeling approach to design chassis strains of Saccharomyces cerevisiae - a widely used microbial cell factory. For a group of 29 products covering a broad range of biochemistry and applications, we identified modular metabolic engineering strategies for re-routing carbon flux towards the desi...
Funder: European Molecular Biology Laboratory (EMBL); Id: http://dx.doi.org/10.13039/100013060Abstra...
Metabolic engineering relies on the Design-Build-Test cycle. This cycle includes technologies like m...
Metabolic engineering relies on the Design-Build-Test cycle. This cycle includes technologies like m...
The diversity of industrially important molecules for which microbial production routes have been ex...
Supplementary information accompanies this paper at http://www.nature.com/srepThe diversity of indus...
First-principle metabolic modelling holds potential for designing microbial chassis that are resilie...
First-principle metabolic modelling holds potential for designing microbial chassis that are resilie...
Abstract First‐principle metabolic modelling holds potential for designing microbial chassis that ar...
Abstract First-principle metabolic modelling holds potential for designing microbial chassis that ar...
Despite some progress over the last years, the development of optimized yeast strains for the produc...
Despite some progress over the last years, the development of optimized yeast strains for the produc...
Despite some progress over the last years, the development of optimized yeast strains for the produc...
Saccharomyces cerevisiae is a widely used microorganism for industrial biotechnology that has great ...
The generation of novel yeast cell factories for production of high-value industrial biotechnologica...
The generation of novel yeast cell factories for production of high-value industrial biotechnologica...
Funder: European Molecular Biology Laboratory (EMBL); Id: http://dx.doi.org/10.13039/100013060Abstra...
Metabolic engineering relies on the Design-Build-Test cycle. This cycle includes technologies like m...
Metabolic engineering relies on the Design-Build-Test cycle. This cycle includes technologies like m...
The diversity of industrially important molecules for which microbial production routes have been ex...
Supplementary information accompanies this paper at http://www.nature.com/srepThe diversity of indus...
First-principle metabolic modelling holds potential for designing microbial chassis that are resilie...
First-principle metabolic modelling holds potential for designing microbial chassis that are resilie...
Abstract First‐principle metabolic modelling holds potential for designing microbial chassis that ar...
Abstract First-principle metabolic modelling holds potential for designing microbial chassis that ar...
Despite some progress over the last years, the development of optimized yeast strains for the produc...
Despite some progress over the last years, the development of optimized yeast strains for the produc...
Despite some progress over the last years, the development of optimized yeast strains for the produc...
Saccharomyces cerevisiae is a widely used microorganism for industrial biotechnology that has great ...
The generation of novel yeast cell factories for production of high-value industrial biotechnologica...
The generation of novel yeast cell factories for production of high-value industrial biotechnologica...
Funder: European Molecular Biology Laboratory (EMBL); Id: http://dx.doi.org/10.13039/100013060Abstra...
Metabolic engineering relies on the Design-Build-Test cycle. This cycle includes technologies like m...
Metabolic engineering relies on the Design-Build-Test cycle. This cycle includes technologies like m...