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Gene|October 18, 2003
Role of MADS box proteins and their cofactors in combinatorial control of gene expression and cell developmentFrancine Messenguy, Evelyne DuboisNucleic Acids Research|August 13, 2010
Selection systems based on dominant-negative transcription factors for precise genetic engineeringRaphaël Dutoit, Evelyne Dubois, Eric JacobsMolecular and Cellular Biology|April 22, 2009
The yeast GATA factor Gat1 occupies a central position in nitrogen catabolite repression-sensitive gene activationIsabelle Georis, André Feller, Fabienne Vierendeels, et al.Yeast (Chichester, England)|June 26, 2023
Differing SAGA module requirements for NCR-sensitive gene transcription in yeastIsabelle Georis, Aria Ronsmans, Fabienne Vierendeels, et al.Molecular and Cellular Biology|July 26, 2002
Swapping functional specificity of a MADS box protein: residues required for Arg80 regulation of arginine metabolismAdil Jamai, Evelyne Dubois, Andrew K Vershon, et al.Molecular Microbiology|June 28, 2003
Arg82p is a bifunctional protein whose inositol polyphosphate kinase activity is essential for nitrogen and PHO gene expression but not for Mcm1p chaperoning in yeastMohamed El Alami, Francine Messenguy, Bart Scherens, et al.The Journal of Biological Chemistry|July 26, 2006
Transduction of the nitrogen signal activating Gln3-mediated transcription is independent of Npr1 kinase and Rsp5-Bul1/2 ubiquitin ligase in Saccharomyces cerevisiaeAndré Feller, Mélanie Boeckstaens, Anna Maria Marini, et al.Molecular Microbiology|April 16, 2002
The proper folding of a long C-terminal segment of the yeast Lys14p regulator is required for activation of LYS genes in response to the metabolic effectorMohamed El Alami, André Feller, André Piérard, et al.The Journal of Biological Chemistry|October 4, 2006
Saccharomyces cerevisiae Sit4 phosphatase is active irrespective of the nitrogen source provided, and Gln3 phosphorylation levels become nitrogen source-responsive in a sit4-deleted strainJennifer J Tate, André Feller, Evelyne Dubois, et al.The Journal of Biological Chemistry|February 5, 2008
Tor pathway control of the nitrogen-responsive DAL5 gene bifurcates at the level of Gln3 and Gat1 regulation in Saccharomyces cerevisiaeIsabelle Georis, Jennifer J Tate, Terrance G Cooper, et al.Pageof 3