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Genetics|June 20, 2019
Sit4 and PP2A Dephosphorylate Nitrogen Catabolite Repression-Sensitive Gln3 When TorC1 Is Up- as Well as DownregulatedJennifer J Tate, Elizabeth A Tolley, Terrance G CooperThe 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.FEMS Yeast Research|February 21, 2006
Differing responses of Gat1 and Gln3 phosphorylation and localization to rapamycin and methionine sulfoximine treatment in Saccharomyces cerevisiaeAjit Kulkarni, Thomas D Buford, Rajendra Rai, 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.Genetics|December 24, 2016
General Amino Acid Control and 14-3-3 Proteins Bmh1/2 Are Required for Nitrogen Catabolite Repression-Sensitive Regulation of Gln3 and Gat1 LocalizationJennifer J Tate, David Buford, Rajendra Rai, et al.The Journal of Biological Chemistry|November 1, 2011
Nitrogen-responsive regulation of GATA protein family activators Gln3 and Gat1 occurs by two distinct pathways, one inhibited by rapamycin and the other by methionine sulfoximineIsabelle Georis, Jennifer J Tate, Terrance G Cooper, et al.The Journal of Biological Chemistry|April 10, 2010
Distinct phosphatase requirements and GATA factor responses to nitrogen catabolite repression and rapamycin treatment in Saccharomyces cerevisiaeJennifer J Tate, Isabelle Georis, Evelyne Dubois, et al.The Journal of Biological Chemistry|March 30, 2002
Mks1p is required for negative regulation of retrograde gene expression in Saccharomyces cerevisiae but does not affect nitrogen catabolite repression-sensitive gene expressionJennifer J Tate, Kathleen H Cox, Rajendra Rai, et al.The Journal of Biological Chemistry|December 18, 2003
Gln3 phosphorylation and intracellular localization in nutrient limitation and starvation differ from those generated by rapamycin inhibition of Tor1/2 in Saccharomyces cerevisiaeKathleen H Cox, Ajit Kulkarni, Jennifer J Tate, et al.Genetics|April 15, 2021
N- and C-terminal Gln3-Tor1 interaction sites: one acting negatively and the other positively to regulate nuclear Gln3 localizationJennifer J Tate, Rajendra Rai, Claudio De Virgilio, et al.Pageof 5