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Striking conservation of TFIID in Schizosaccharomyces pombe and Saccharomyces cerevisiae.
Nature. 1990 Jul 19;346(6281):291-4
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Highly conserved core domain and unique N terminus with presumptive regulatory motifs in a human TATA factor (TFIID).
Nature. 1990 Jul 26;346(6282):387-90
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Arabidopsis thaliana contains two genes for TFIID.
Nature. 1990 Jul 26;346(6282):390-4
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Evidence for a heat shock transcription factor-independent mechanism for heat shock induction of transcription in Saccharomyces cerevisiae.
Proc Natl Acad Sci U S A. 1990 Sep;87(17):6550-4
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Cloning of the Schizosaccharomyces pombe TFIID gene reveals a strong conservation of functional domains present in Saccharomyces cerevisiae TFIID.
Genes Dev. 1990 Jul;4(7):1141-8
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Two distinct domains in the yeast transcription factor IID and evidence for a TATA box-induced conformational change.
Mol Cell Biol. 1991 Jan;11(1):63-74
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Saccharomyces cerevisiae PHO5 promoter region: location and function of the upstream activation site.
Mol Cell Biol. 1986 Jul;6(7):2613-23
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The organization and transcription of the galactose gene cluster of Saccharomyces.
J Mol Biol. 1981 Oct 25;152(2):285-315
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Nucleotide sequence of yeast LEU2 shows 5'-noncoding region has sequences cognate to leucine.
Cell. 1982 Dec;31(2 Pt 1):319-25
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Regulation of inducible and tissue-specific gene expression.
Science. 1987 Jun 5;236(4806):1237-45
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Isolation of the gene encoding the S. cerevisiae heat shock transcription factor.
Cell. 1988 Sep 9;54(6):841-53
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Yeast heat shock factor is an essential DNA-binding protein that exhibits temperature-dependent phosphorylation.
Cell. 1988 Sep 9;54(6):855-64
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Depletion of histone H4 and nucleosomes activates the PHO5 gene in Saccharomyces cerevisiae.
EMBO J. 1988 Jul;7(7):2221-8
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Copper activates metallothionein gene transcription by altering the conformation of a specific DNA binding protein.
Cell. 1988 Nov 18;55(4):705-17
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Factors involved in specific transcription by mammalian RNA polymerase II: purification, genetic specificity, and TATA box-promoter interactions of TFIID.
Mol Cell Biol. 1988 Oct;8(10):4028-40
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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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Transcriptional regulation in mammalian cells by sequence-specific DNA binding proteins.
Science. 1989 Jul 28;245(4916):371-8
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Isolation of the gene encoding the yeast TATA binding protein TFIID: a gene identical to the SPT15 suppressor of Ty element insertions.
Cell. 1989 Sep 22;58(6):1173-81
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SPT15, the gene encoding the yeast TATA binding factor TFIID, is required for normal transcription initiation in vivo.
Cell. 1989 Sep 22;58(6):1183-91
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Sp1 activates transcription without enhancing DNA-binding activity of the TATA box factor.
Mol Cell Biol. 1989 Aug;9(8):3299-307
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Cloning and structure of a yeast gene encoding a general transcription initiation factor TFIID that binds to the TATA box.
Nature. 1989 Sep 28;341(6240):299-303
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Yeast TATA-box transcription factor gene.
Proc Natl Acad Sci U S A. 1989 Oct;86(20):7785-9
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Cloning of the gene encoding the yeast protein BTF1Y, which can substitute for the human TATA box-binding factor.
Proc Natl Acad Sci U S A. 1989 Dec;86(24):9803-7
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Functional domains and upstream activation properties of cloned human TATA binding protein.
Science. 1990 Jun 29;248(4963):1625-30
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Cloning of a transcriptionally active human TATA binding factor.
Science. 1990 Jun 29;248(4963):1646-50
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Analysis of structure-function relationships of yeast TATA box binding factor TFIID.
Cell. 1990 Jun 29;61(7):1171-8
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Isolation and characterization of the Drosophila gene encoding the TATA box binding protein, TFIID.
Cell. 1990 Jun 29;61(7):1179-86
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Mechanism of transcriptional activation by Sp1: evidence for coactivators.
Cell. 1990 Jun 29;61(7):1187-97
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Formation of stable preinitiation complexes between eukaryotic class B transcription factors and promoter sequences.
Nature. 1983 Feb 24;301(5902):680-6
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Yeast promoters and lacZ fusions designed to study expression of cloned genes in yeast.
Methods Enzymol. 1983;101:181-91
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Primary structure and transcription of an amplified genetic locus: the CUP1 locus of yeast.
Proc Natl Acad Sci U S A. 1984 Jan;81(2):337-41
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Interactions between RNA polymerase II, factors, and template leading to accurate transcription.
J Biol Chem. 1984 Feb 25;259(4):2509-16
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Sequences that regulate the divergent GAL1-GAL10 promoter in Saccharomyces cerevisiae.
Mol Cell Biol. 1984 Aug;4(8):1440-8
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The amino terminus of the yeast F1-ATPase beta-subunit precursor functions as a mitochondrial import signal.
J Cell Biol. 1986 Feb;102(2):523-33
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