Metabolic flux analysis with a comprehensive isotopomer model in Bacillus subtilis
- 8 August 2001
- journal article
- research article
- Published by Wiley in Biotechnology & Bioengineering
- Vol. 76 (2) , 144-156
- https://doi.org/10.1002/bit.1154
Abstract
Fluxes in central carbon metabolism of a genetically engineered, riboflavin-producing Bacillus subtilis strain were investigated in glucose-limited chemostat cultures at low (0.11 h−1) and high (0.44 h−1) dilution rates. Using a mixture of 10% [U-13C] and 90% glucose labeled at natural abundance, 13C-labeling experiments were carried out to provide additional information for metabolic flux balancing. The resulting labeling pattern in the proteinogenic amino acids were analyzed by two-dimensional [13C, 1H] nuclear magnetic resonance (NMR) spectroscopy. To account rigorously for all available data from these experiments, we developed a comprehensive isotopomer model of B. subtilis central metabolism. Using this model, intracellular carbon net and exchange fluxes were estimated on the basis of validated physiological data and biomass composition in combination with 2D NMR data from 45 individual carbon atom spectra in the amino acids. Glucose catabolism proceeded primarily via glycolysis but pentose phosphate pathway fluxes increased with increasing growth rate. Moreover, significant back fluxes from the TCA cycle to the lower part of glycolysis via the gluconeogenic PEP carboxykinase were detected. The malic enzyme reaction, in contrast, was found to be inactive. A thorough statistical analysis was performed to prove the reliability of the isotopomer balance model and the obtained results. Specifically, a χ2 test was applied to validate the model and the chi-square criterion was used to explore the sensitivity of model predictions to the experimental data. © 2001 John Wiley & Sons, Inc. Biotechnol Bioeng 76: 144–156, 2001.Keywords
This publication has 39 references indexed in Scilit:
- In Vivo Quantification of Parallel and Bidirectional Fluxes in the Anaplerosis of Corynebacterium glutamicumJournal of Biological Chemistry, 2000
- GC‐MS Analysis of Amino Acids Rapidly Provides Rich Information for Isotopomer BalancingBiotechnology Progress, 2000
- Isotopomer Analysis Using GC-MSMetabolic Engineering, 1999
- Bioreaction Network Topology and Metabolic Flux Ratio Analysis by Biosynthetic Fractional 13C Labeling and Two-Dimensional NMR SpectroscopyMetabolic Engineering, 1999
- Quantification of Intracellular Metabolic Fluxes from Fractional Enrichment and13C–13C Coupling Constraints on the Isotopomer Distribution in Labeled Biomass ComponentsMetabolic Engineering, 1999
- Biosynthetically Directed Fractional 13C-labeling of Proteinogenic Amino Acids. An Efficient Analytical Tool to Investigate Intermediary MetabolismEuropean Journal of Biochemistry, 1995
- Linear constraint relations in biochemical reaction systems: I. Classification of the calculability and the balanceability of conversion ratesBiotechnology & Bioengineering, 1994
- An Overview of Evolutionary Algorithms for Parameter OptimizationEvolutionary Computation, 1993
- Optimization by Simulated AnnealingScience, 1983
- Carbon isotope discrimination in a plant possessing the C4 dicar☐ylic acid pathwayBiochemical and Biophysical Research Communications, 1970