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PMID: 15211482 Published · ppublish English Journal Article

Metabolic network analysis of lysine producing Corynebacterium glutamicum at a miniaturized scale.

Biotechnology and bioengineering ·Vol. 87 ·No. 1 ·2004-07-05 ·Pages 1-6

Wittmann C, Kim HM, Heinzle E

Abstract

We present a straightforward approach comprising (13)C tracer experiments at 200-microL volume in 96-well microtiter plates with on-line measurement of dissolved oxygen for quantitative high-throughput metabolic network analysis at a miniaturized scale. This method was successfully applied for cultivation and (13)C metabolic flux analysis of two mutants of lysine producing Corynebacterium glutamicum (ATCC 13287 and ATCC 21543). Microtiter-plate cultivations showed excellent accordance in kinetics and stoichiometry of growth and product formation as well as in intracellular flux distributions as compared with parallel shake-flask experiments. These cultivations further allowed clear identification of strain-specific flux differences such as increased flux toward lysine, increased flux through the pentose phosphate pathway (PPP), decreased flux through the tricarboxylic (TCA) cycle, and increased dihydroxyacetone formation in C. glutamicum ATCC 21543 compared with ATCC 13287. The present approach has strong potential for broad quantitative screening of metabolic network activities, especially those involving high-cost tracer substrates.

MeSH Terms
Carbon Isotopes/metabolism Citric Acid Cycle/physiology Corynebacterium glutamicum/growth & development,physiology Dihydroxyacetone/biosynthesis Lysine/biosynthesis Pentose Phosphate Pathway/physiology
Chemicals
Carbon Isotopes Lysine Dihydroxyacetone
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Wittmann Christoph
Biochemical Engineering, Saarland University, Im Stadtwald, 66041 Saarbrücken, Germany. [email protected]
Kim Hyung Min
Heinzle Elmar
Article Info
Journal
Biotechnology and bioengineering
Abbr.
Biotechnol Bioeng
ISSN
0006-3592
Published
2004-07-05
Pages
1-6
Language
English
Region
United States
NLM ID
7502021
Subset
IM
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