In this work, we describe the application of a genome-scale metabolic model and flux balance analysis for the prediction of succinic acid overproduction strategies in Saccharomyces cerevisiae. The top three single gene deletion strategies, Delta mdh1, Delta oac1, and Delta dic1, were tested using knock-out strains cultivated anaerobically on glucose, coupled with physiological and DNA microarray characterization. While Delta mdh1 and Delta oac1 strains failed to produce succinate, Delta dic1 produced 0.02 C-mol/C-mol glucose, in close agreement with model predictions (0.03 C-mol/C-mol glucose). Transcriptional profiling suggests that succinate formation is coupled to mitochondrial redox balancing, and more specifically, reductive TCA cycle ...
Abstract First‐principle metabolic modelling holds potential for designing microbial chassis that ar...
Previously, our lab replaced the endogenous FAD-dependent pathway for glycerol catabolism in S. cere...
Previously, our lab replaced the endogenous FAD-dependent pathway for glycerol catabolism in S. cere...
In this work, we describe the application of a genome-scale metabolic model and flux balance analysi...
Saccharomyces cerevisiae is the most well characterized eukaryote, the preferred microbial cell fact...
Saccharomyces cerevisiae is the most well characterized eukaryote, the preferred microbial cell fact...
Saccharomyces cerevisiae is the most well characterized eukaryote, the preferred microbial cell fact...
Saccharomyces cerevisiae is the most well characterized eukaryote, the preferred microbial cell fact...
Saccharomyces cerevisiae is the most well characterized eukaryote, the preferred microbial cell fact...
<p>Panel a shows the central carbon metabolism of <i>S. cerevisiae</i>, and the model-guided metabol...
<div><p><i>Saccharomyces cerevisiae</i> is the most well characterized eukaryote, the preferred micr...
Succinate is a naturally occurring metabolite in organism’s cell and is industrially important chemi...
Saccharomyces cerevisiae is the most well characterized eukaryote, the preferred microbial cell fact...
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...
Previously, our lab replaced the endogenous FAD-dependent pathway for glycerol catabolism in S. cere...
Previously, our lab replaced the endogenous FAD-dependent pathway for glycerol catabolism in S. cere...
In this work, we describe the application of a genome-scale metabolic model and flux balance analysi...
Saccharomyces cerevisiae is the most well characterized eukaryote, the preferred microbial cell fact...
Saccharomyces cerevisiae is the most well characterized eukaryote, the preferred microbial cell fact...
Saccharomyces cerevisiae is the most well characterized eukaryote, the preferred microbial cell fact...
Saccharomyces cerevisiae is the most well characterized eukaryote, the preferred microbial cell fact...
Saccharomyces cerevisiae is the most well characterized eukaryote, the preferred microbial cell fact...
<p>Panel a shows the central carbon metabolism of <i>S. cerevisiae</i>, and the model-guided metabol...
<div><p><i>Saccharomyces cerevisiae</i> is the most well characterized eukaryote, the preferred micr...
Succinate is a naturally occurring metabolite in organism’s cell and is industrially important chemi...
Saccharomyces cerevisiae is the most well characterized eukaryote, the preferred microbial cell fact...
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...
Previously, our lab replaced the endogenous FAD-dependent pathway for glycerol catabolism in S. cere...
Previously, our lab replaced the endogenous FAD-dependent pathway for glycerol catabolism in S. cere...