Yeastract
YEASTRACT+ INESC-ID IST IBB
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Regulation Reference(s)

The Yeastract team, is actively curating each regulation evidence code, association type and environmental condition.
Transcription
Factor
Target
ORF/Genes
References Evidence
Code
Evidence
Experiment
Association
Type
Strain Environmental
Condition
Log2FC
Aft1p YMR058W PubMed external link Yoo HY et al., Current microbiology, 1995 Sep;31(3):163-8Yoo HY et al., Current microbiology, 1995 Sep;31(3):163-8 Indirect lacZ - wt vs TF overexpression Positive S288c cells grown with iron deprivation, expressing a constitutive AFT1 allele N/A
PubMed external link Yamaguchi-Iwai Y et al., The EMBO journal, 1996 Jul 1;15(13):3377-84Yamaguchi-Iwai Y et al., The EMBO journal, 1996 Jul 1;15(13):3377-84 Direct In vivo footprinting WT vs TF mutant vs TF overexpressing mutant N/A S288c iron-starved medium N/A
Indirect lacZ - wt vs TF overexpression Positive S288c iron-starved medium N/A
PubMed external link Muchardt C et al., The EMBO journal, 1996 Jul 1;15(13):3394-402Muchardt C et al., The EMBO journal, 1996 Jul 1;15(13):3394-402 Direct In vivo footprinting WT vs TF mutant vs TF overexpressing mutant N/A S288c iron-repleted medium (100mM Ferric ammonium sulfate) N/A
PubMed external link Lin SJ et al., The Journal of biological chemistry, 1997 Apr 4;272(14):9215-20Lin SJ et al., The Journal of biological chemistry, 1997 Apr 4;272(14):9215-20 Indirect Northern blot - wt vs TF mutant Positive S288c YPD medium; mid-log phase N/A
PubMed external link Dormer UH et al., The Journal of biological chemistry, 2000 Oct 20;275(42):32611-6Dormer UH et al., The Journal of biological chemistry, 2000 Oct 20;275(42):32611-6 Direct DNA footprinting Positive S288c low copper complete medium N/A
PubMed external link Blaiseau PL et al., The Journal of biological chemistry, 2001 Sep 7;276(36):34221-6Blaiseau PL et al., The Journal of biological chemistry, 2001 Sep 7;276(36):34221-6 Indirect Northern blot - wt vs TF mutant Positive CM3260 Iron depletion; cells in log phase grown in iron and copper limiting medium without iron addition N/A
Indirect Northern blot - wt vs TF mutant Positive CM3260 Iron repletion; cells in log phase grown in iron and copper limiting medium supplemented with 100 microM iron N/A
Indirect lacZ - wt vs TF mutant Positive CM3260 Iron depletion; cells in log phase grown in iron and copper limiting medium without iron addition N/A
Indirect lacZ - wt vs TF mutant Positive CM3260 Iron repletion; cells in log phase grown in iron and copper limiting medium supplemented with 100 microM iron N/A
PubMed external link Rutherford JC et al., Proceedings of the National Academy of Sciences of the United States of America, 2001 Dec 4;98(25):14322-7Rutherford JC et al., Proceedings of the National Academy of Sciences of the United States of America, 2001 Dec 4;98(25):14322-7 Direct EMSA N/A S288c in vitro N/A
PubMed external link De Freitas JM et al., The Journal of biological chemistry, 2004 Feb 6;279(6):4450-8De Freitas JM et al., The Journal of biological chemistry, 2004 Feb 6;279(6):4450-8 Indirect RT-PCR - wt vs TF mutant Positive BY4741 YPD medium; Cell were grown to early log phase; N/A
PubMed external link Courel M et al., Molecular and cellular biology, 2005 Aug;25(15):6760-71Courel M et al., Molecular and cellular biology, 2005 Aug;25(15):6760-71 Indirect Microarray WT vs TF mutant Positive Y14438 Iron-depleted conditions - Defined medium (iron-limiting and copper-limiting yeast nitrogen base ); 30.C. N/A
Indirect Northern blot WT vs TF mutant Positive Y14438 Iron-depleted conditions - Defined medium (iron-limiting and copper-limiting yeast nitrogen base ); 30.C. N/A
Indirect Northern blot WT vs TF mutant Positive Y14438 Iron- replete conditions - Defined medium (iron-limiting and copper-limiting yeast nitrogen base ) with 100uM ferric ammonium sulfate; 30.C. N/A
Indirect Northern blot - wt vs TF mutant Positive SCMC01 Iron-depleted conditions - Defined medium (iron-limiting and copper-limiting yeast nitrogen base ); 30.C. N/A
Indirect Northern blot - wt vs TF mutant Positive SCMC01 Iron- replete conditions - Defined medium (iron-limiting and copper-limiting yeast nitrogen base ) with 100uM ferric ammonium sulfate; 30.C. N/A
Indirect Microarray analysis - wt vs TF mutant Positive SCMC01 Iron-depleted conditions - Defined medium (iron-limiting and copper-limiting yeast nitrogen base ); 30.C. N/A
PubMed external link Dubacq C et al., Molecular genetics and genomics : MGG, 2006 Feb;275(2):114-24Dubacq C et al., Molecular genetics and genomics : MGG, 2006 Feb;275(2):114-24 Indirect Microarray analysis - wt vs TF mutant Positive S288c YPD N/A
PubMed external link Workman CT et al., Science (New York, N.Y.), 2006 May 19;312(5776):1054-9Workman CT et al., Science (New York, N.Y.), 2006 May 19;312(5776):1054-9 Direct Chip-on-chip N/A S288c N/A N/A
PubMed external link Pagani MA et al., Molecular microbiology, 2007 Jul;65(2):521-37Pagani MA et al., Molecular microbiology, 2007 Jul;65(2):521-37 Indirect Microarray analysis - WT vs TF Deletion Positive BY4741 Grown in YPD to OD = 0.8 at 28°C. Centrifugation and resuspension in fresh YPD for periods of 30 and 60 min. Transcription factor gene deletion. N/A
Indirect Microarray analysis - WT vs TF Deletion Positive BY4741 Grown in YPD to OD = 0.8 at 28°C. Centrifugation and resuspension in YPD supplemented with 5 mM ZnCl2 for periods of 30 and 60 min. Transcription factor gene deletion. N/A
PubMed external link Hausmann A et al., The Journal of biological chemistry, 2008 Mar 28;283(13):8318-30Hausmann A et al., The Journal of biological chemistry, 2008 Mar 28;283(13):8318-30 Indirect promoter assay Positive BY4741 wt versus TF overexpression SD media mid exp cells Fe-repleted cells N/A
PubMed external link Kumánovics A et al., The Journal of biological chemistry, 2008 Apr 18;283(16):10276-86Kumánovics A et al., The Journal of biological chemistry, 2008 Apr 18;283(16):10276-86 Direct ChIP N/A S288c low iron medium (CM + 40 ?m BPS) N/A
PubMed external link Ihrig J et al., Eukaryotic cell, 2010 Mar;9(3):460-71Ihrig J et al., Eukaryotic cell, 2010 Mar;9(3):460-71 Indirect GFP - wt vs TF overexpression Positive S288c 50mM bathophenanthroline (Fe depletion) N/A
PubMed external link Reimand J et al., Nucleic acids research, 2010 Aug;38(14):4768-77Reimand J et al., Nucleic acids research, 2010 Aug;38(14):4768-77 Indirect Microarray analysis - WT vs TF Deletion Positive BY4741; S288C; R1158 Standard YPD conditions Dataset ewxtracted from The Longhorn Array Database (LAD). Transcription factor gene deletion. 2.7063995918714
PubMed external link Berthelet S et al., Genetics, 2010 Jul;185(3):1111-28Berthelet S et al., Genetics, 2010 Jul;185(3):1111-28 Direct ChIP N/A S288c YPD N/A
Indirect Microarray analysis - WT vs TF Deletion Positive YKB779 Grown in YPD at 30°C to OD600 of 0.4. Transcription factor gene deletion. 2.957713
PubMed external link Miao R et al., Biochemistry, 2011 Apr 5;50(13):2660-71Miao R et al., Biochemistry, 2011 Apr 5;50(13):2660-71 Indirect RT-PCR - wt vs TF mutant Positive S288c Iron depletion N/A
Indirect RT-PCR - wt vs TF mutant Positive S288c iron repletion, constitutive TF N/A
PubMed external link Pérez-Sampietro M et al., Fungal genetics and biology : FG & B, 2014 Oct;71():76-85Pérez-Sampietro M et al., Fungal genetics and biology : FG & B, 2014 Oct;71():76-85 Indirect Northern blot - wt vs TF mutant Positive S288c WT and DELTAaft1 cells growing exponentially in YPD liquid medium and then treated with 2 mM selenite for 3h or 6h. SNR19 was employed as loading control. N/A
PubMed external link Kingsbury JM et al., Human molecular genetics, 2016 Aug 15;25(16):3524-3538Kingsbury JM et al., Human molecular genetics, 2016 Aug 15;25(16):3524-3538 Indirect RT-PCR - wt vs TF mutant Positive S288c IDP1R148H (analogous to human Idh1R132) with strong GAL1 promoter in S288c cells grown in Synthetic Complete Galactose + URA 24h of incubation, with high copy of AFT1 N/A
PubMed external link Gaspar-Cordeiro A et al., The FEBS journal, 2018 May;285(10):1861-1872Gaspar-Cordeiro A et al., The FEBS journal, 2018 May;285(10):1861-1872 Indirect RT-PCR - wt vs TF mutant Positive BY4742 SC medium N/A
Indirect RT-PCR - wt vs TF mutant Positive BY4742 SC medium + 2mM CuSO4 N/A
Indirect Western blot - wt vs mutant promoter sequence Positive BY4742 SC medium N/A
Indirect Western blot - wt vs mutant promoter sequence Positive BY4742 SC medium + 2mM CuSO4 N/A
PubMed external link Caballero-Molada M et al., The Biochemical journal, 2018 Apr 30;475(8):1523-1534Caballero-Molada M et al., The Biochemical journal, 2018 Apr 30;475(8):1523-1534 Indirect RT-PCR - wt vs TF mutant Positive BY4741 SD medium, mid exponential phase N/A
Indirect RT-PCR - wt vs TF mutant Positive BY4741 Cells cultured to mid-exponential phase in SD medium with amino acid supplementation N/A
Indirect RT-PCR - wt vs TF mutant Positive BY4741 Cells cultured to mid-exponential phase in SD medium N/A
PubMed external link Pujol-Carrion N et al., Biochimica et biophysica acta. Molecular cell research, 2021 Apr;1868(5):118974Pujol-Carrion N et al., Biochimica et biophysica acta. Molecular cell research, 2021 Apr;1868(5):118974 Indirect lacZ - wt vs TF mutant Positive CML128 SD medium N/A
Indirect lacZ - wt vs TF mutant Positive CML128 SD medium Fe depleted N/A
Indirect lacZ - wt vs TF mutant Positive CML128 SD medium Fe repleted (10mM, 6h) N/A
PubMed external link Jordá T et al., Journal of fungi (Basel, Switzerland), 2021 Oct 25;7(11):Jordá T et al., Journal of fungi (Basel, Switzerland), 2021 Oct 25;7(11): Indirect RT-PCR - wt vs TF overexpression Positive BY4741 SC medium N/A
Indirect RT-PCR - wt vs TF overexpression Positive BY4741 SC medium with 100 microM BPS for 9 h (Iron Deficiency) N/A