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Molecular and Cellular Biology|January 1, 1987
Two related regulatory sequences are required for maximal induction of Saccharomyces cerevisiae his3 transcriptionK Struhl, D E HillThe EMBO Journal|September 1, 1987
GCN4, a eukaryotic transcriptional activator protein, binds as a dimer to target DNAI A Hope, K StruhlMolecular and Cellular Biology|December 1, 1989
Functional distinctions between yeast TATA elementsP A Harbury, K StruhlProceedings of the National Academy of Sciences of the United States of America|December 1, 1989
An efficient method for generating proteins with altered enzymatic properties: application to beta-lactamaseA R Oliphant, K StruhlCell|May 15, 1992
The TATA-binding protein is required for transcription by all three nuclear RNA polymerases in yeast cellsB P Cormack, K StruhlMolecular and Cellular Biology|December 1, 1992
ACR1, a yeast ATF/CREB repressorA C Vincent, K StruhlMolecular and Cellular Biology|February 12, 2000
TATA-binding protein mutants that increase transcription from enhancerless and repressed promoters in vivoJ V Geisberg, K StruhlThe EMBO Journal|January 1, 1993
CDC39, an essential nuclear protein that negatively regulates transcription and differentially affects the constitutive and inducible HIS3 promotersM A Collart, K StruhlGenes & Development|March 1, 1994
NOT1(CDC39), NOT2(CDC36), NOT3, and NOT4 encode a global-negative regulator of transcription that differentially affects TATA-element utilizationM A Collart, K StruhlNature|September 7, 1989
Changing fos oncoprotein to a jun-independent DNA binding protein with GCN4 dimerization specificity by swapping "leucine zippers"J W Sellers, K StruhlPageof 20