Serveur d'exploration sur la rapamycine et les champignons - Exploration (Accueil)

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List of bibliographic references indexed by gln

Number of relevant bibliographic references: 34.
[0-20] [0 - 20][0 - 34][20-33][20-40]
Ident.Authors (with country if any)Title
000206 (2019) K S Antonets [Russie] ; M V Belousov [Russie] ; M E Belousova [Russie] ; A A Nizhnikov [Russie]The Gln3 Transcriptional Regulator of Saccharomyces cerevisiae Manifests Prion-Like Properties upon Overproduction.
000232 (2019) Jennifer J. Tate [États-Unis] ; Elizabeth A. Tolley [États-Unis] ; Terrance G. Cooper [États-Unis]Sit4 and PP2A Dephosphorylate Nitrogen Catabolite Repression-Sensitive Gln3 When TorC1 Is Up- as Well as Downregulated.
000544 (2018) Jennifer J. Tate [États-Unis] ; Rajendra Rai [États-Unis] ; Terrance G. Cooper [États-Unis]More than One Way in: Three Gln3 Sequences Required To Relieve Negative Ure2 Regulation and Support Nuclear Gln3 Import in Saccharomyces cerevisiae.
000664 (2018) Kyle Mohler [États-Unis] ; Rebecca Mann [États-Unis] ; Amanda Kyle [États-Unis] ; Noah Reynolds [États-Unis] ; Michael Ibba [États-Unis]Aminoacyl-tRNA quality control is required for efficient activation of the TOR pathway regulator Gln3p.
000839 (2017) Jennifer J. Tate [États-Unis] ; David Buford [États-Unis] ; Rajendra Rai [États-Unis] ; Terrance G. Cooper [États-Unis]General Amino Acid Control and 14-3-3 Proteins Bmh1/2 Are Required for Nitrogen Catabolite Repression-Sensitive Regulation of Gln3 and Gat1 Localization.
000A63 (2016) Rajendra Rai [États-Unis] ; Jennifer J. Tate [États-Unis] ; Terrance G. Cooper [États-Unis]Multiple Targets on the Gln3 Transcription Activator Are Cumulatively Required for Control of Its Cytoplasmic Sequestration.
000C53 (2015) Minori Numamoto [Japon] ; Shota Tagami [Japon] ; Yusuke Ueda [Japon] ; Yusuke Imabeppu [Japon] ; Yu Sasano [Japon] ; Minetaka Sugiyama [Japon] ; Hiromi Maekawa [Japon] ; Satoshi Harashima [Japon]Nuclear localization domains of GATA activator Gln3 are required for transcription of target genes through dephosphorylation in Saccharomyces cerevisiae.
000C54 (2015) Rajendra Rai [États-Unis] ; Jennifer J. Tate [États-Unis] ; Karthik Shanmuganatham [États-Unis] ; Martha M. Howe [États-Unis] ; David Nelson [États-Unis] ; Terrance G. Cooper [États-Unis]Nuclear Gln3 Import Is Regulated by Nitrogen Catabolite Repression Whereas Export Is Specifically Regulated by Glutamine.
000C56 (2015) Jennifer J. Tate [États-Unis] ; Rajendra Rai [États-Unis] ; Terrance G. Cooper [États-Unis]Nitrogen starvation and TorC1 inhibition differentially affect nuclear localization of the Gln3 and Gat1 transcription factors through the rare glutamine tRNACUG in Saccharomyces cerevisiae.
000F35 (2014) Rajendra Rai [États-Unis] ; Jennifer J. Tate [États-Unis] ; Karthik Shanmuganatham [États-Unis] ; Martha M. Howe [États-Unis] ; Terrance G. Cooper [États-Unis]A domain in the transcription activator Gln3 specifically required for rapamycin responsiveness.
000F45 (2013) Rajendra Rai [États-Unis] ; Jennifer J. Tate ; David R. Nelson ; Terrance G. Coopergln3 mutations dissociate responses to nitrogen limitation (nitrogen catabolite repression) and rapamycin inhibition of TorC1.
001283 (2011) Isabelle Georis [Belgique] ; Jennifer J. Tate ; Terrance G. Cooper ; Evelyne DuboisNitrogen-responsive regulation of GATA protein family activators Gln3 and Gat1 occurs by two distinct pathways, one inhibited by rapamycin and the other by methionine sulfoximine.
001492 (2009) Jennifer J. Tate [États-Unis] ; Isabelle Georis ; André Feller ; Evelyne Dubois ; Terrance G. CooperRapamycin-induced Gln3 dephosphorylation is insufficient for nuclear localization: Sit4 and PP2A phosphatases are regulated and function differently.
001569 (2008) Isabelle Georis [Belgique] ; Jennifer J. Tate ; Terrance G. Cooper ; Evelyne DuboisTor pathway control of the nitrogen-responsive DAL5 gene bifurcates at the level of Gln3 and Gat1 regulation in Saccharomyces cerevisiae.
001598 (2008) Rekha Puria [États-Unis] ; Maria E. CardenasRapamycin bypasses vesicle-mediated signaling events to activate Gln3 in Saccharomyces cerevisiae.
001605 (2008) Rekha Puria [États-Unis] ; Sara A. Zurita-Martinez ; Maria E. CardenasNuclear translocation of Gln3 in response to nutrient signals requires Golgi-to-endosome trafficking in Saccharomyces cerevisiae.
001636 (2008) Wei-Li Liao [États-Unis] ; Ana M. Ram N ; William A. FonziGLN3 encodes a global regulator of nitrogen metabolism and virulence of C. albicans.
001682 (2007) Jennifer J. Tate [États-Unis] ; Terrance G. CooperStress-responsive Gln3 localization in Saccharomyces cerevisiae is separable from and can overwhelm nitrogen source regulation.
001747 (2006) André Feller [Belgique] ; Mélanie Boeckstaens ; Anna Maria Marini ; Evelyne DuboisTransduction of the nitrogen signal activating Gln3-mediated transcription is independent of Npr1 kinase and Rsp5-Bul1/2 ubiquitin ligase in Saccharomyces cerevisiae.
001755 (2006) Jennifer J. Tate [États-Unis] ; André Feller ; Evelyne Dubois ; Terrance G. CooperSaccharomyces cerevisiae Sit4 phosphatase is active irrespective of the nitrogen source provided, and Gln3 phosphorylation levels become nitrogen source-responsive in a sit4-deleted strain.
001780 (2006) Bart Scherens [Belgique] ; André Feller ; Fabienne Vierendeels ; Francine Messenguy ; Evelyne DuboisIdentification of direct and indirect targets of the Gln3 and Gat1 activators by transcriptional profiling in response to nitrogen availability in the short and long term.

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