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Metabolic flux distributions in <i>Corynebacterium glutamicum</i> during growth and lysine overproduction

Biotechnology and Bioengineering · 1993 · Vol. 41(6) · pp. 633–646
Joseph J. VallinoGregory Stephanopoulos

Abstract

The two main contributions of this are the solidification of Corynebacterium glutamicum biochemistry guided by bioreaction network analysis, and the determination of bansal metabolic flux distributions during growth and lysine synthesis. Employed methodology makes use of stoichiometrically based mass balances to determine flux distributions in the C. glutamicum metabolic network. Presented are a brief description of the methodology, a through literature review of glutamic acid bacteria biochemistry, and specific results obtained through a combination of fermentation studies and analysis-directed intracellular assays. The latter include the findings of the lack of activity of glyoxylate shunt, and that phosphoenolpyruvate carboxylase (PPC) is the only anaplerotic reaction expressed in C. glutamicum cultivated on glucose minimal media. Network simplifications afforded by the above findings facilitated the determination of metabolic flux distributions under a variety of culture conditions and led to the following conclusions. Both the pentose phosphate pathway and PPC support fluxes during growth and lysine overproduction branch point does not appear to limit lysine synthesis.

Microbial Metabolic Engineering and BioproductionMetabolomics and Mass Spectrometry StudiesProtein purification and stabilityCorynebacterium glutamicumBiochemistryLysineMetabolic flux analysisOverproductionFlux (metallurgy)Pentose phosphate pathwayMetabolic networkFermentationGlyoxylate cycle
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Solving Least Squares Problems
Mathematics of Computation · 1976 · 1,152 citations
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