S. Sikdar, M. Bier, P. Todd (1989)
Frontiers in Bioprocessing
B. Christensen, J. Nielsen (2000)
Metabolic network analysis of Penicillium chrysogenum using (13)C-labeled glucose.Biotechnology and bioengineering, 68 6
ChristopherJ.L. Klein, J. Rasmussen, B. Rønnow, L. Olsson, J. Nielsen (1999)
Investigation of the impact of MIG1 and MIG2 on the physiology of Saccharomyces cerevisiae.Journal of biotechnology, 68 2-3
A. Varma, B. Palsson (1994)
Metabolic Flux Balancing: Basic Concepts, Scientific and Practical UseBio/Technology, 12
M. Treitel, S. Kuchin, M. Carlson (1998)
Snf1 Protein Kinase Regulates Phosphorylation of the Mig1 Repressor in Saccharomyces cerevisiaeMolecular and Cellular Biology, 18
S. Oliver, M. Winson, D. Kell, F. Baganz (1998)
Systematic functional analysis of the yeast genome.Trends in biotechnology, 16 9
Thomas Szyperski (1998)
13C-NMR, MS and metabolic flux balancing in biotechnology researchQuarterly Reviews of Biophysics, 31
A. Goffeau, F. Hilger, D. Portetelle, M. Vandenbol, K. Kleine (1997)
The yeast genome directory.Nature, 387 6632 Suppl
A. Rahner, Margit Hiesinger, H. Schüller (1999)
Deregulation of gluconeogenic structural genes by variants of the transcriptional activator Cat8p of the yeast Saccharomyces cerevisiaeMolecular Microbiology, 34
K. Entian, T. Schuster, J. Hegemann, D. Becher, H. Feldmann, U. Güldener, R. Götz, M. Hansen, C. Hollenberg, G. Jansen, W. Kramer, S. Klein, P. Kötter, J. Kricke, H. Launhardt, G. Mannhaupt, A. Maierl, P. Meyer, W. Mewes, T. Munder, R. Niedenthal, M. Rad, A. Röhmer, A. Römer, M. Rose, B. Schäfer, Maria-Luise Siegler, J. Vetter, N. Wilhelm, K. Wolf, F. Zimmermann, A. Zollner, A. Hinnen (1999)
Functional analysis of 150 deletion mutants in Saccharomyces cerevisiae by a systematic approachMolecular and General Genetics MGG, 262
E. Boles, P. Jong‐Gubbels, J. Pronk (1998)
Identification and Characterization ofMAE1, the Saccharomyces cerevisiae Structural Gene Encoding Mitochondrial Malic EnzymeJournal of Bacteriology, 180
Shaoping Chen, J. Brockenbrough, Joanne Dove, J. Aris (1997)
Homocitrate Synthase Is Located in the Nucleus in the YeastSaccharomyces cerevisiae *The Journal of Biological Chemistry, 272
U. Sauer, D. Lasko, Jocelyne Fiaux, M. Hochuli, Ralf Glaser, T. Szyperski, K. Wüthrich, J. Bailey (1999)
Metabolic Flux Ratio Analysis of Genetic and Environmental Modulations of Escherichia coli Central Carbon MetabolismJournal of Bacteriology, 181
Mark Johnston (1999)
Feasting, fasting and fermenting. Glucose sensing in yeast and other cells.Trends in genetics : TIG, 15 1
(1983)
Biomass from carbohydrates
Michelle Walker, Dale Val, Manfred Rohde, R. Devenish, John Wallace (1991)
Yeast pyruvate carboxylase: identification of two genes encoding isoenzymes.Biochemical and biophysical research communications, 176 3
(1972)
The effect of aeration on the growth energetics and biochemical composition of baker’s yeast, with an appendix: reactions leading to the formation of yeast cell material from glucose and ethanol
L. Kraakman, J. Winderickx, J. Thevelein, J. Winde (1999)
Structure-function analysis of yeast hexokinase: structural requirements for triggering cAMP signalling and catabolite repression.The Biochemical journal, 343 Pt 1
N. Monschau, K. Stahmann, Hermann Sahm, J.Bryan McNeil, Andrew Bognar (2006)
Identification of Saccharomyces cerevisiae GLY1 as a threonine aldolase: a key enzyme in glycine biosynthesis.FEMS microbiology letters, 150 1
Joseph VIlllino, G. Stephanopoulos (1990)
FLUX DETERMINATION IN CELLULAR BIOREACTION NETWORKS: APPLICATIONS TO LYSINE FERMENTATIONS
B. Christensen, Jens Nielsen (1999)
Isotopomer analysis using GC-MS.Metabolic engineering, 1 4
Copyright © 1998, American Society for Microbiology Yeast Carbon Catabolite Repression†
J. Nehlin, H. Ronne (1990)
Yeast MIG1 repressor is related to the mammalian early growth response and Wilms' tumour finger proteins.The EMBO Journal, 9
Yeast sugar metabolism
S. Falco, Kathy Dumas, Kenneth Livak (1985)
Nucleotide sequence of the yeast ILV2 gene which encodes acetolactate synthase.Nucleic acids research, 13 11
W.-N. Lee, E. Bergner, Zengkui Guo (1992)
Mass isotopomer pattern and precursor-product relationship.Biological mass spectrometry, 21 2
E. Ryan, J. Tracy, G. Kohlhaw (1973)
Subcellular Localization of the Leucine Biosynthetic Enzymes in YeastJournal of Bacteriology, 116
P. Bruinenberg, J. Dijken, W. Scheffers (1983)
A Theoretical Analysis of NADPH Production and Consumption in YeastsMicrobiology, 129
N. Monschau, K. Stahmann, H. Sahm, J. Mcneil, A. Bognar (1997)
Identification of GLY1 as a threonine aldolase: a key enzyme in glycine biosynthesisFems Microbiology Letters, 150
C. Verduyn, E. Postma, W. Scheffers, J. Dijken (1992)
Effect of benzoic acid on metabolic fluxes in yeasts: A continuous‐culture study on the regulation of respiration and alcoholic fermentationYeast, 8
J. McNeilS, Evan, M., McIntosh, Brian TaylorS, Fang-rong ZhangS, Simon Tangs, Andrew BognarSn (1994)
Cloning and molecular characterization of three genes, including two genes encoding serine hydroxymethyltransferases, whose inactivation is required to render yeast auxotrophic for glycine.The Journal of biological chemistry, 269 12
J. McNeil, A. Bognar, R. Pearlman (1996)
In vivo analysis of folate coenzymes and their compartmentation in Saccharomyces cerevisiae.Genetics, 142 2
Ji‐Quan Liu, S. Nagata, T. Dairi, H. Misono, S. Shimizu, Hideaki Yamada (1997)
The GLY1 gene of Saccharomyces cerevisiae encodes a low-specific L-threonine aldolase that catalyzes cleavage of L-allo-threonine and L-threonine to glycine--expression of the gene in Escherichia coli and purification and characterization of the enzyme.European journal of biochemistry, 245 2
J. Östling, J. Östling, H. Ronne (1998)
Negative control of the Mig1p repressor by Snf1p-dependent phosphorylation in the absence of glucose.European journal of biochemistry, 252 1
C. Klein, L. Olsson, Jens Nielsen (1998)
Glucose control in Saccharomyces cerevisiae: the role of Mig1 in metabolic functions.Microbiology, 144 ( Pt 1)
B. Christensen, Jens Nielsen (2000)
Metabolic network analysis. A powerful tool in metabolic engineering.Advances in biochemical engineering/biotechnology, 66
E. Daae, Andrew Ison (1999)
Classification and sensitivity analysis of a proposed primary metabolic reaction network for Streptomyces lividans.Metabolic engineering, 1 2
W‐N. Lee, L. Byerley, E. Bergner, J. Edmond (1991)
Mass isotopomer analysis: theoretical and practical considerations.Biological mass spectrometry, 20 8
J. Gancedo, R. Lagunas (1973)
Contribution of the pentose-phosphate pathway to glucose metabolism in Saccharomyces cerevisiae: A critical analysis on the use of labelled glucosePlant Science Letters, 1
M. Carlson (1999)
Glucose repression in yeast.Current opinion in microbiology, 2 2
Michelle Meijer, J. Boonstra, A. Verkleij, C. Verrips (1998)
Glucose Repression in Saccharomyces cerevisiae Is Related to the Glucose Concentration Rather Than the Glucose Flux*The Journal of Biological Chemistry, 273
W. Gulik, J. Heijnen (1995)
A metabolic network stoichiometry analysis of microbial growth and product formationBiotechnology and Bioengineering, 48
T. Nissen, U. Schulze, J. Nielsen, J. Villadsen (1997)
Flux distributions in anaerobic, glucose-limited continuous cultures of Saccharomyces cerevisiae.Microbiology, 143 ( Pt 1)
(1997)
Glucose repression (carbon catabolite repression) in yeast, p. 409–434
R. Triendl (1997)
CJD link prompts ban on brain tissue usenature, 387
D. Voet, J. Voet (1995)
Biochemistry, 2nd ed.
Journal of Bacteriology – Unpaywall
Published: Feb 15, 2001
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.