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Molecular Biology and Evolution|May 24, 2001
Evolution of proteasomal ATPasesK Wollenberg, J C SwaffieldJournal of Molecular Evolution|October 29, 1997
The evolution of the conserved ATPase domain (CAD): reconstructing the history of an ancient protein moduleJ C Swaffield, M D PuruggananSAAS Bulletin, Biochemistry and Biotechnology|January 1, 1991
Eukaryotic gene regulation: simple vs complex modelsJ C Swaffield, S A JohnstonCurrent Protocols in Molecular Biology|February 12, 2008
Affinity purification of proteins binding to GST fusion proteinsJ C Swaffield, S A JohnstonJournal of Molecular Biology|November 5, 1992
Protein folding within the cell is influenced by controlled rates of polypeptide elongationT Crombie, J C Swaffield, A J BrownNature|March 2, 1995
A highly conserved ATPase protein as a mediator between acidic activation domains and the TATA-binding proteinJ C Swaffield, K Melcher, S A JohnstonNature|June 25, 1992
Alterations in a yeast protein resembling HIV Tat-binding protein relieve requirement for an acidic activation domain in GAL4J C Swaffield, J F Bromberg, S A JohnstonGene|November 28, 1996
CADp44: a novel regulatory subunit of the 26S proteasome and the mammalian homolog of yeast Sug2pV W Bauer, J C Swaffield, S A Johnston, et al.Nature|March 2, 1995
Interaction of thyroid-hormone receptor with a conserved transcriptional mediatorJ W Lee, F Ryan, J C Swaffield, et al.Journal of Neurobiology|December 24, 1997
Identification of a phylogenetically conserved Sug1 CAD family member that is differentially expressed in the mouse nervous systemD Sun, J C Swaffield, S A Johnston, et al.Pageof 2