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Use of lacZ fusions to delimit regulatory elements of the inducible divergent GAL1-GAL10 promoter in Saccharomyces cerevisiae.
Mol Cell Biol. 1984 Oct;4(10):1985-98
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Yeast histone H4 and H3 N-termini have different effects on the chromatin structure of the GAL1 promoter.
EMBO J. 1995 Apr 3;14(7):1468-77
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Specific DNA binding of GAL4, a positive regulatory protein of yeast.
Cell. 1985 Apr;40(4):767-74
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An efficient chloramphenicol-resistance marker for Saccharomyces cerevisiae and Escherichia coli.
Gene. 1986;45(2):149-58
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The yeast PHO5 promoter: phosphate-control elements and sequences mediating mRNA start-site selection.
Proc Natl Acad Sci U S A. 1987 Mar;84(5):1340-4
PMID: 2881299
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The yeast UASG is a transcriptional enhancer in human HeLa cells in the presence of the GAL4 trans-activator.
Cell. 1988 Jan 29;52(2):169-78
PMID: 2830022
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A model fungal gene regulatory mechanism: the GAL genes of Saccharomyces cerevisiae.
Microbiol Rev. 1987 Dec;51(4):458-76
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Nucleosome loss activates yeast downstream promoters in vivo.
Cell. 1988 Dec 23;55(6):1137-45
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Five intermediate complexes in transcription initiation by RNA polymerase II.
Cell. 1989 Feb 24;56(4):549-61
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The two positively acting regulatory proteins PHO2 and PHO4 physically interact with PHO5 upstream activation regions.
Mol Cell Biol. 1989 May;9(5):2050-7
PMID: 2664469
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Differential repression of GAL4 and adjacent transcription activators by operators in the yeast GAL upstream activating sequence.
Mol Cell Biol. 1989 Oct;9(10):4282-90
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Role of trans-activating proteins in the generation of active chromatin at the PHO5 promoter in S. cerevisiae.
EMBO J. 1990 Aug;9(8):2523-8
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Yeast and human TATA-binding proteins have nearly identical DNA sequence requirements for transcription in vitro.
Mol Cell Biol. 1990 Aug;10(8):3859-67
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Two systems of glucose repression of the GAL1 promoter in Saccharomyces cerevisiae.
Mol Cell Biol. 1990 Sep;10(9):4757-69
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Opposing regulatory functions of positive and negative elements in UASG control transcription of the yeast GAL genes.
Mol Cell Biol. 1990 Nov;10(11):5663-70
PMID: 2122231
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Yeast histone H4 N-terminal sequence is required for promoter activation in vivo.
Cell. 1991 Jun 14;65(6):1023-31
PMID: 2044150
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A GAL10-CYC1 hybrid yeast promoter identifies the GAL4 regulatory region as an upstream site.
Proc Natl Acad Sci U S A. 1982 Dec;79(23):7410-4
PMID: 6760197
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Disruption of regulatory gene GAL80 in Saccharomyces cerevisiae: effects on carbon-controlled regulation of the galactose/melibiose pathway genes.
Mol Cell Biol. 1984 Aug;4(8):1521-7
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Control of yeast GAL genes by MIG1 repressor: a transcriptional cascade in the glucose response.
EMBO J. 1991 Nov;10(11):3373-7
PMID: 1915298
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Stable nucleosome positioning and complete repression by the yeast alpha 2 repressor are disrupted by amino-terminal mutations in histone H4.
Genes Dev. 1992 Mar;6(3):411-25
PMID: 1547940
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Nucleosome loss activates CUP1 and HIS3 promoters to fully induced levels in the yeast Saccharomyces cerevisiae.
Mol Cell Biol. 1992 Apr;12(4):1621-9
PMID: 1549116
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Multiple mechanisms mediate glucose repression of the yeast GAL1 gene.
Proc Natl Acad Sci U S A. 1992 Jul 1;89(13):5922-6
PMID: 1631075
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Histone H3 N-terminal mutations allow hyperactivation of the yeast GAL1 gene in vivo.
EMBO J. 1992 Sep;11(9):3297-306
PMID: 1505519
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Nucleosome disruption at the yeast PHO5 promoter upon PHO5 induction occurs in the absence of DNA replication.
Cell. 1992 Nov 27;71(5):853-64
PMID: 1423633
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Duality of TBP, the universal transcription factor.
Science. 1994 Feb 25;263(5150):1103-4
PMID: 8108728
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Histone H3 amino terminus is required for telomeric and silent mating locus repression in yeast.
Nature. 1994 May 19;369(6477):245-7
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Yeast bleomycin hydrolase is a DNA-binding cysteine protease. Identification, purification, biochemical characterization.
J Biol Chem. 1994 Aug 19;269(33):21177-83
PMID: 8063738
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Saccharomyces cerevisiae GAL1-GAL10 divergent promoter region: location and function of the upstream activating sequence UASG.
Mol Cell Biol. 1984 Nov;4(11):2467-78
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