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RNA from the yeast transposable element Ty1 has both ends in the direct repeats, a structure similar to retrovirus RNA.
Proc Natl Acad Sci U S A. 1983 May;80(9):2432-6
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Recycling of the general transcription factors during RNA polymerase II transcription.
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J Biol Chem. 1985 Aug 25;260(18):10353-60
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Extensive homology among the largest subunits of eukaryotic and prokaryotic RNA polymerases.
Cell. 1985 Sep;42(2):599-610
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Nucleotide sequence and transcriptional mapping of the yeast pet56-his3-ded1 gene region.
Nucleic Acids Res. 1985 Dec 9;13(23):8587-601
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GAL11 protein, an auxiliary transcription activator for genes encoding galactose-metabolizing enzymes in Saccharomyces cerevisiae.
Mol Cell Biol. 1988 Nov;8(11):4991-9
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Factors involved in specific transcription by mammalian RNA polymerase II. Factors IIE and IIF independently interact with RNA polymerase II.
J Biol Chem. 1989 May 25;264(15):8913-21
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Isolation and characterization of two genes encoding yeast mating pheromone signaling elements: CDC72 and CDC73.
Cold Spring Harb Symp Quant Biol. 1988;53 Pt 2:621-7
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The Saccharomyces cerevisiae SPT13/GAL11 gene has both positive and negative regulatory roles in transcription.
Mol Cell Biol. 1989 Dec;9(12):5602-9
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Intragenic and extragenic suppressors of mutations in the heptapeptide repeat domain of Saccharomyces cerevisiae RNA polymerase II.
Genetics. 1989 Dec;123(4):715-24
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HPR1, a novel yeast gene that prevents intrachromosomal excision recombination, shows carboxy-terminal homology to the Saccharomyces cerevisiae TOP1 gene.
Mol Cell Biol. 1990 Apr;10(4):1439-51
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GAL11P: a yeast mutation that potentiates the effect of weak GAL4-derived activators.
Cell. 1990 Dec 21;63(6):1299-309
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Role of the mammalian transcription factors IIF, IIS, and IIX during elongation by RNA polymerase II.
Mol Cell Biol. 1991 Mar;11(3):1195-206
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Getting started with yeast.
Methods Enzymol. 1991;194:3-21
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Two yeast genes encoding calmodulin-dependent protein kinases. Isolation, sequencing and bacterial expressions of CMK1 and CMK2.
J Biol Chem. 1991 Jul 5;266(19):12784-94
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Transcriptional activation in an improved whole-cell extract from Saccharomyces cerevisiae.
Mol Cell Biol. 1991 Sep;11(9):4555-60
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Yeast flavohemoglobin is an ancient protein related to globins and a reductase family.
Proc Natl Acad Sci U S A. 1992 Jun 1;89(11):5015-9
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Differential display of eukaryotic messenger RNA by means of the polymerase chain reaction.
Science. 1992 Aug 14;257(5072):967-71
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Genetics. 1992 Oct;132(2):325-36
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Distinct TFIID complexes mediate the effect of different transcriptional activators.
EMBO J. 1993 Feb;12(2):489-99
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A multisubunit complex associated with the RNA polymerase II CTD and TATA-binding protein in yeast.
Cell. 1993 Jul 2;73(7):1361-75
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General initiation factors for RNA polymerase II.
Annu Rev Biochem. 1993;62:161-90
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Resolution of transcription factors from a transcriptionally active whole-cell extract from yeast: purification of TFIIB, TBP, and RNA polymerase IIa.
Protein Expr Purif. 1993 Aug;4(4):290-7
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Glucose repression of yeast mitochondrial transcription: kinetics of derepression and role of nuclear genes.
Mol Cell Biol. 1994 Feb;14(2):1160-70
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An RNA polymerase II holoenzyme responsive to activators.
Nature. 1994 Mar 31;368(6470):466-9
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The basics of basal transcription by RNA polymerase II.
Cell. 1994 Apr 8;77(1):1-3
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Transcriptional activation: a complex puzzle with few easy pieces.
Cell. 1994 Apr 8;77(1):5-8
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A multiprotein mediator of transcriptional activation and its interaction with the C-terminal repeat domain of RNA polymerase II.
Cell. 1994 May 20;77(4):599-608
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The SUP35 omnipotent suppressor gene is involved in the maintenance of the non-Mendelian determinant [psi+] in the yeast Saccharomyces cerevisiae.
Genetics. 1994 Jul;137(3):671-6
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Human TAFII30 is present in a distinct TFIID complex and is required for transcriptional activation by the estrogen receptor.
Cell. 1994 Oct 7;79(1):107-17
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Assembly of recombinant TFIID reveals differential coactivator requirements for distinct transcriptional activators.
Cell. 1994 Oct 7;79(1):93-105
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NOT1(CDC39), NOT2(CDC36), NOT3, and NOT4 encode a global-negative regulator of transcription that differentially affects TATA-element utilization.
Genes Dev. 1994 Mar 1;8(5):525-37
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Functional similarity and physical association between GCN5 and ADA2: putative transcriptional adaptors.
EMBO J. 1994 Oct 17;13(20):4807-15
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Characterization of mutations that suppress the temperature-sensitive growth of the hpr1 delta mutant of Saccharomyces cerevisiae.
Genetics. 1994 Aug;137(4):945-56
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TFIIF-TAF-RNA polymerase II connection.
Genes Dev. 1994 Dec 1;8(23):2868-78
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Positive and negative transcriptional regulation by the yeast GAL11 protein depends on the structure of the promoter and a combination of cis elements.
Mol Gen Genet. 1994 Nov 1;245(3):301-12
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ADA3, a putative transcriptional adaptor, consists of two separable domains and interacts with ADA2 and GCN5 in a trimeric complex.
Mol Cell Biol. 1995 Mar;15(3):1203-9
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The yeast TFB1 and SSL1 genes, which encode subunits of transcription factor IIH, are required for nucleotide excision repair and RNA polymerase II transcription.
Mol Cell Biol. 1995 Apr;15(4):2288-93
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The yeast CCR4 protein is neither regulated by nor associated with the SPT6 and SPT10 proteins and forms a functionally distinct complex from that of the SNF/SWI transcription factors.
Genetics. 1994 Dec;138(4):1005-13
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The RNA polymerase II holoenzyme and its implications for gene regulation.
Trends Biochem Sci. 1995 Mar;20(3):113-6
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Contact with a component of the polymerase II holoenzyme suffices for gene activation.
Cell. 1995 May 5;81(3):359-68
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TFIIH: a link between transcription, DNA repair and cell cycle regulation.
Curr Opin Genet Dev. 1995 Apr;5(2):217-21
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Genetic and physical interactions between yeast RGR1 and SIN4 in chromatin organization and transcriptional regulation.
Genetics. 1995 May;140(1):47-54
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Characterization of physical interactions of the putative transcriptional adaptor, ADA2, with acidic activation domains and TATA-binding protein.
J Biol Chem. 1995 Aug 18;270(33):19337-44
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A mammalian RNA polymerase II holoenzyme containing all components required for promoter-specific transcription initiation.
Cell. 1995 Oct 6;83(1):137-46
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Common themes in assembly and function of eukaryotic transcription complexes.
Annu Rev Biochem. 1995;64:533-61
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Yeast global transcriptional regulators Sin4 and Rgr1 are components of mediator complex/RNA polymerase II holoenzyme.
Proc Natl Acad Sci U S A. 1995 Nov 21;92(24):10864-8
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Paf1p, an RNA polymerase II-associated factor in Saccharomyces cerevisiae, may have both positive and negative roles in transcription.
Mol Cell Biol. 1996 Feb;16(2):669-76
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RNA polymerase II holoenzyme contains SWI/SNF regulators involved in chromatin remodeling.
Cell. 1996 Jan 26;84(2):235-44
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A mammalian SRB protein associated with an RNA polymerase II holoenzyme.
Nature. 1996 Mar 7;380(6569):82-5
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A human RNA polymerase II complex associated with SRB and DNA-repair proteins.
Nature. 1996 May 2;381(6577):86-9
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Transcriptional corepression in vitro: a Mot1p-associated form of TATA-binding protein is required for repression by Leu3p.
Mol Cell Biol. 1996 Apr;16(4):1641-8
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A novel collection of accessory factors associated with yeast RNA polymerase II.
Protein Expr Purif. 1996 Aug;8(1):85-90
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Mutations in the RNA polymerase II transcription machinery suppress the hyperrecombination mutant hpr1 delta of Saccharomyces cerevisiae.
Genetics. 1996 Mar;142(3):749-59
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General requirement for RNA polymerase II holoenzymes in vivo.
Proc Natl Acad Sci U S A. 1995 May 9;92(10):4587-90
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The SWI-SNF complex: a chromatin remodeling machine?
Trends Biochem Sci. 1995 Apr;20(4):143-6
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One-step gene disruption in yeast.
Methods Enzymol. 1983;101:202-11
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