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Trends in Biochemical Sciences|May 10, 2001
Glucose-sensing mechanisms in eukaryotic cellsF Rolland, J Winderickx, J M TheveleinMolecular Microbiology|November 9, 2000
Glucose-induced cAMP signalling in yeast requires both a G-protein coupled receptor system for extracellular glucose detection and a separable hexose kinase-dependent sensing processF Rolland, J H De Winde, K Lemaire, et al.Yeast (Chichester, England)|May 15, 1998
During the initiation of fermentation overexpression of hexokinase PII in yeast transiently causes a similar deregulation of glycolysis as deletion of Tps1J R Ernandes, C De Meirsman, F Rolland, et al.FEMS Yeast Research|April 19, 2003
The role of hexose transport and phosphorylation in cAMP signalling in the yeast Saccharomyces cerevisiaeF Rolland, V Wanke, L Cauwenberg, et al.Yeast (Chichester, England)|August 1, 1997
Identification of genes with nutrient-controlled expression by PCR-mapping in the yeast Saccharomyces cerevisiaeM Crauwels, J Winderickx, J H de Winde, et al.The Biochemical Journal|September 24, 1999
Structure-function analysis of yeast hexokinase: structural requirements for triggering cAMP signalling and catabolite repressionL S Kraakman, J Winderickx, J M Thevelein, et al.European Journal of Biochemistry|October 15, 1996
Differential requirement of the yeast sugar kinases for sugar sensing in establishing the catabolite-repressed stateJ H De Winde, M Crauwels, S Hohmann, et al.Microbiology (Reading, England)|July 1, 1996
Glucose-triggered signalling in Saccharomyces cerevisiae: different requirements for sugar phosphorylation between cells grown on glucose and those grown on non-fermentable carbon sourcesM B Pernambuco, J Winderickx, M Crauwels, et al.Yeast (Chichester, England)|August 24, 1999
Deletion of SFI1, a novel suppressor of partial Ras-cAMP pathway deficiency in the yeast Saccharomyces cerevisiae, causes G(2) arrestP Ma, J Winderickx, D Nauwelaers, et al.International Journal of Food Microbiology|May 3, 2000
A specific mutation in Saccharomyces cerevisiae adenylate cyclase, Cyr1K176M, eliminates glucose- and acidification-induced cAMP signalling and delays glucose-induced loss of stress resistanceF Dumortier, M Vanhalewyn, G Debast, et al.Pageof 22