Title of article :
Glucose Metabolism and Regulation of Glycolysis in Lactococcus lactis Strains with Decreased Lactate Dehydrogenase Activity
Author/Authors :
Garrigues، نويسنده , , Christel and Goupil-Feuillerat، نويسنده , , Nathalie and Cocaign-Bousquet، نويسنده , , Muriel and Renault، نويسنده , , Pierre and Lindley، نويسنده , , Nic D. and Loubiere، نويسنده , , Pascal، نويسنده ,
Issue Information :
دوماهنامه با شماره پیاپی سال 2001
Pages :
7
From page :
211
To page :
217
Abstract :
The distribution of carbon flux at the pyruvate node was investigated in Lactococcus lactis under anaerobic conditions with mutant strains having decreased lactate dehydrogenase activity. Strains previously selected by random mutagenesis by H. Boumerdassi, C. Monnet, M. Desmazeaud, and G. Corrieu (Appl. Environ. Microbiol. 63, 2293–2299, 1997) were found to have single punctual mutations in the ldh gene and presented a high degree of instability. The strain L. lactis JIM 5711 in which lactate dehydrogenase activity was diminished to less than 30% of the wild type maintained homolactic metabolism. This was due to an increase in the intracellular pyruvate concentration, which ensures the maintained flux through the lactate dehydrogenase. Pyruvate metabolism was linked to the flux limitation at the level of glyceraldehyde-3-phosphate dehydrogenase, as previously postulated for the parent strain (C. Garrigues, P. Loubière, N. D. Lindley, and M. Cocaign-Bousquet (1997) J. Bacteriol. 179, 5282–5287, 1997). However, a strain (L. lactis JIM 5954) in which the ldh gene was interrupted reoriented pyruvate metabolism toward mixed metabolism (production of formate, acetate, and ethanol), though the glycolytic flux was not strongly diminished. Only limited production of acetoin occurred despite significant overflow of pyruvate. Intracellular metabolite profiles indicated that the in vivo glyceraldehyde-3-phosphate dehydrogenase activity was no longer flux limiting in the Δldh strain. The shift toward mixed acid fermentation was correlated with the lower intracellular trioses phosphate concentration and diminished allosteric inhibition of pyruvate formate lyase.
Journal title :
Metabolic Engineering
Serial Year :
2001
Journal title :
Metabolic Engineering
Record number :
1428353
Link To Document :
بازگشت