Dynamic flux balance analysis of high cell density fed-batch culture of Escherichia coli BL21 (DE3) with mass spectrometry-based spent media analysis.
Hardik DodiaVivek MishraPrajval NakraniCharandatta MuddanaAnant KediaSneha RanaDeepti SahasrabuddhePramod P WangikarPublished in: Biotechnology and bioengineering (2024)
Dynamic flux balance analysis (FBA) allows estimation of intracellular reaction rates using organism-specific genome-scale metabolic models (GSMM) and by assuming instantaneous pseudo-steady states for processes that are inherently dynamic. This technique is well-suited for industrial bioprocesses employing complex media characterized by a hierarchy of substrate uptake and product secretion. However, knowledge of exchange rates of many components of the media would be required to obtain meaningful results. Here, we performed spent media analysis using mass spectrometry coupled with liquid and gas chromatography for a fed-batch, high-cell density cultivation of Escherichia coli BL21(DE3) expressing a recombinant protein. Time course measurements thus obtained for 246 metabolites were converted to instantaneous exchange rates. These were then used as constraints for dynamic FBA using a previously reported GSMM, thus providing insights into how the flux map evolves through the process. Changes in tri-carboxylic acid cycle fluxes correlated with the increased demand for energy during recombinant protein production. The results show how amino acids act as hubs for the synthesis of other cellular metabolites. Our results provide a deeper understanding of an industrial bioprocess and will have implications in further optimizing the process.
Keyphrases
- mass spectrometry
- gas chromatography
- escherichia coli
- amino acid
- liquid chromatography
- single cell
- tandem mass spectrometry
- cell therapy
- ms ms
- wastewater treatment
- healthcare
- high resolution mass spectrometry
- high performance liquid chromatography
- heavy metals
- high resolution
- stem cells
- klebsiella pneumoniae
- protein protein
- ionic liquid
- small molecule
- mesenchymal stem cells
- gene expression
- cell free
- risk assessment
- reactive oxygen species
- biofilm formation
- dna methylation
- anaerobic digestion
- data analysis
- wild type