Affiliation:
1. Centre de Bioingénierie Gilbert Durand, UMR CNRS 5504, UR 792 INRA, Institut National des Sciences Appliquées, Complexe Scientifique de Rangueil, F-31077 Toulouse Cedex 4, France
Abstract
ABSTRACT
Lactococcus lactis
NCDO 2118 was grown in a simple synthetic medium containing only six essential amino acids and glucose as carbon substrates to determine qualitatively and quantitatively the carbon fluxes into the metabolic network. The specific rates of substrate consumption, product formation, and biomass synthesis, calculated during the exponential growth phase, represented the carbon fluxes within the catabolic and anabolic pathways. The macromolecular composition of the biomass was measured to distribute the global anabolic flux into the specific anabolic pathways. Finally, the distribution of radiolabeled substrates, both into the excreted fermentation end products and into the different macromolecular fractions of biomass, was monitored. The classical end products of lactic acid metabolism (lactate, formate, and acetate) were labeled with glucose, which did not label other excreted products, and to a lesser extent with serine, which was deaminated to pyruvate and represented approximately 10% of the pyruvate flux. Other minor products, keto and hydroxy acids, were produced from glutamate and branched-chain amino acids via deamination and subsequent decarboxylation and/or reduction. Glucose labeled all biomass fractions and accounted for 66% of the cellular carbon, although this represented only 5% of the consumed glucose.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Reference36 articles.
1. The effect of growth rate and other growth conditions on the lipid composition of Escherichia coli;Arneborg N.;Appl. Microbiol. Biotechnol.,1993
2. Growth energetics of Lactococcus cremoris FD1 during energy-, carbon-, and nitrogen-limitation in steady state and transient cultures;Benthin S.;Chem. Eng. Sci.,1994
3. Amino acid utilization by Lactococcus lactis subsp. cremoris FD1 during growth on yeast or casein peptone;Benthin S.;J. Appl. Microbiol.,1996
4. Physiological and genetic regulation of rRNA synthesis in Lactococcus;Beresford T.;J. Gen. Microbiol.,1993
5. Bremer
H.
Dennis
P. P.
Modulation of chemical composition and other parameters of the cell by growth rate
Escherichia coli and Salmonella typhimurium: cellular and molecular biology.
Neidhardt
F. C.
Ingraham
J. L.
Low
K. B.
Magasanik
B.
Schaechter
M.
Umbarger
H. E.
1987
1527
1542
American Society for Microbiology
Washington D.C.
Cited by
80 articles.
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