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Proceedings of the National Academy of Sciences of the United States of America|May 28, 1996
Absolute mRNA levels and transcriptional initiation rates in Saccharomyces cerevisiaeV Iyer, K StruhlMolecular Cell|July 14, 1998
Activator-mediated recruitment of the RNA polymerase II machinery is the predominant mechanism for transcriptional activation in yeastM Keaveney, K StruhlMolecular and Cellular Biology|April 3, 2001
Histone acetylation at promoters is differentially affected by specific activators and repressorsJ Deckert, K StruhlCell|February 21, 1992
Yeast and human TFIID with altered DNA-binding specificity for TATA elementsM Strubin, K StruhlThe EMBO Journal|December 1, 1985
Yeast mRNA initiation sites are determined primarily by specific sequences, not by the distance from the TATA elementW Chen, K StruhlMolecular and Cellular Biology|December 31, 1997
Transcriptional activation by TFIIB mutants that are severely impaired in interaction with promoter DNA and acidic activation domainsS Chou, K StruhlThe EMBO Journal|January 1, 1989
Yeast upstream activator protein GCN4 can stimulate transcription when its binding site replaces the TATA elementW Chen, K StruhlMolecular and Cellular Biology|March 1, 1997
A severely defective TATA-binding protein-TFIIB interaction does not preclude transcriptional activation in vivoM Lee, K StruhlMolecular and Cellular Biology|March 1, 1994
Protein kinase A mediates growth-regulated expression of yeast ribosomal protein genes by modulating RAP1 transcriptional activityC Klein, K StruhlGenes to Cells : Devoted to Molecular & Cellular Mechanisms|May 21, 1999
Incorporation of Drosophila TAF110 into the yeast TFIID complex does not permit the Sp1 glutamine-rich activation domain to function in vivoM Keaveney, K StruhlPageof 340