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Molecular and Cellular Biology|May 29, 2000
Artificial recruitment of TFIID, but not RNA polymerase II holoenzyme, activates transcription in mammalian cellsD R Dorris, K StruhlNucleic Acids Research|August 11, 1988
Defining the consensus sequences of E.coli promoter elements by random selectionA R Oliphant, K StruhlMolecular and Cellular Biology|August 1, 1990
Yeast and human TATA-binding proteins have nearly identical DNA sequence requirements for transcription in vitroC R Wobbe, K StruhlMolecular and Cellular Biology|June 1, 1990
Analysis of Saccharomyces cerevisiae his3 transcription in vitro: biochemical support for multiple mechanisms of transcriptionA S Ponticelli, K StruhlCell|September 12, 1986
Functional dissection of a eukaryotic transcriptional activator protein, GCN4 of yeastI A Hope, K StruhlNucleic Acids Research|September 11, 1993
Dimerization of leucine zippers analyzed by random selectionW T Pu, K StruhlScience (New York, N.Y.)|October 8, 1993
Regional codon randomization: defining a TATA-binding protein surface required for RNA polymerase III transcriptionB P Cormack, K StruhlNucleic Acids Research|February 25, 1992
Uracil interference, a rapid and general method for defining protein-DNA interactions involving the 5-methyl group of thymines: the GCN4-DNA complexW T Pu, K StruhlCurrent Protocols in Protein Science|April 23, 2008
Introduction of plasmid DNA into cellsC E Seidman, K StruhlCell|November 1, 1985
GCN4 protein, synthesized in vitro, binds HIS3 regulatory sequences: implications for general control of amino acid biosynthetic genes in yeastI A Hope, K StruhlPageof 20