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Biochemistry|October 11, 2007
Evidence that tRNA synthetase-directed proton transfer stops mistranslationWilliam F Waas, Paul SchimmelBiochemistry|March 12, 2003
Physiological concentrations of divalent magnesium ion activate the serine/threonine specific protein kinase ERK2William F Waas, Kevin N DalbyThe Journal of Biological Chemistry|January 29, 2002
Transient protein-protein interactions and a random-ordered kinetic mechanism for the phosphorylation of a transcription factor by extracellular-regulated protein kinase 2William F Waas, Kevin N DalbyProtein Expression and Purification|January 26, 2007
The expression and purification of the N-terminal activation domain of the transcription factor c-Myc: a model substrate for exploring ERK2 docking interactionsWilliam F Waas, Kevin N DalbyThe Journal of Biological Chemistry|September 16, 2005
Discovery of a gene family critical to wyosine base formation in a subset of phenylalanine-specific transfer RNAsWilliam F Waas, Valérie de Crécy-Lagard, Paul SchimmelThe Journal of Biological Chemistry|July 12, 2007
Role of a tRNA base modification and its precursors in frameshifting in eukaryotesWilliam F Waas, Zhanna Druzina, Melanie Hanan, et al.Biochemistry|October 22, 2003
Two rate-limiting steps in the kinetic mechanism of the serine/threonine specific protein kinase ERK2: a case of fast phosphorylation followed by fast product releaseWilliam F Waas, Mark A Rainey, Anna E Szafranska, et al.Biochemistry|April 6, 2010
Phosphorylation of the transcription factor Ets-1 by ERK2: rapid dissociation of ADP and phospho-Ets-1Kari Callaway, William F Waas, Mark A Rainey, et al.Journal of Bacteriology|July 10, 2007
Genetic code ambiguity confers a selective advantage on Acinetobacter baylyiJamie M Bacher, William F Waas, David Metzgar, et al.Biochimica Et Biophysica Acta|March 17, 2004
A kinetic approach towards understanding substrate interactions and the catalytic mechanism of the serine/threonine protein kinase ERK2: identifying a potential regulatory role for divalent magnesiumWilliam F Waas, Mark A Rainey, Anna E Szafranska, et al.Pageof 2