Using our recently developed sensor reactor approach, lysine-producing, nongrowing Corynebacterium glutamicum MH20-22B cells were subjected to serial (13)C-labeling experiments for flux analysis during the leucine-limited fed-batch production phase in a 300-L bioreactor. Based on two-dimensional (2D) nuclear magnetic resonance (NMR) measurements of (13)C-labeling patterns of cytoplasmic free metabolites, metabolic flux distributions in the central metabolism were successfully determined. Focusing on the highly concentrated metabolite L-glutamate, the working hypothesis was validated that the equilibration of labeling patterns in intracellular pools was much faster (up to 9.45 min) than the labeling period (3 h) used in the experiments. Anal...
$\textit{Corynebacterium glutamicum}$ is an industrially important producer of the amino acid L-lysi...
The majority of biotechnologically relevant metabolites do not impart a conspicuous phenotype to the...
Abstract Background Corynebacterium glutamicum has several anaplerotic pathways (anaplerosis), which...
Corynebacterium glutamicum is intensively used for the industrial large-scale (fed-) batch productio...
A novel Sensor Reactor technology is presented which permits C-13 labeling experiments for metabolic...
"1"3C nmr spectroscopy has been applied to study the carbon flux distribution through para...
With the aid of the recently developed Sensor reactor system, a series of three subsequent 13C label...
The intracellular concentrations of the valine and leucine pathway intermediates in a Coryne-bacteri...
Kinetic parameters and physiological states of Corynebacterium glutamicum at the growing and L-lysin...
The majority of biotechnologically relevant metabolites do not impart a conspicuous phenotype to the...
In this study we applied elementary mode analysis and metabolic flux analysis to L-glutamate biosynt...
Corynebacterium glutamicum possesses high in vivo activity of the gluconeogenic phosphoenolpyruvate ...
An in-depth analysis of the intracellular metabolite concentrations, metabolic fluxes, and gene expr...
The Gram-positive bacterium Corynebacterium glutamicum is used for the industrial production of amin...
The majority of biotechnologically relevant metabolites do not impart a conspicuous phenotype to the...
$\textit{Corynebacterium glutamicum}$ is an industrially important producer of the amino acid L-lysi...
The majority of biotechnologically relevant metabolites do not impart a conspicuous phenotype to the...
Abstract Background Corynebacterium glutamicum has several anaplerotic pathways (anaplerosis), which...
Corynebacterium glutamicum is intensively used for the industrial large-scale (fed-) batch productio...
A novel Sensor Reactor technology is presented which permits C-13 labeling experiments for metabolic...
"1"3C nmr spectroscopy has been applied to study the carbon flux distribution through para...
With the aid of the recently developed Sensor reactor system, a series of three subsequent 13C label...
The intracellular concentrations of the valine and leucine pathway intermediates in a Coryne-bacteri...
Kinetic parameters and physiological states of Corynebacterium glutamicum at the growing and L-lysin...
The majority of biotechnologically relevant metabolites do not impart a conspicuous phenotype to the...
In this study we applied elementary mode analysis and metabolic flux analysis to L-glutamate biosynt...
Corynebacterium glutamicum possesses high in vivo activity of the gluconeogenic phosphoenolpyruvate ...
An in-depth analysis of the intracellular metabolite concentrations, metabolic fluxes, and gene expr...
The Gram-positive bacterium Corynebacterium glutamicum is used for the industrial production of amin...
The majority of biotechnologically relevant metabolites do not impart a conspicuous phenotype to the...
$\textit{Corynebacterium glutamicum}$ is an industrially important producer of the amino acid L-lysi...
The majority of biotechnologically relevant metabolites do not impart a conspicuous phenotype to the...
Abstract Background Corynebacterium glutamicum has several anaplerotic pathways (anaplerosis), which...