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Current Opinion in Chemical Biology|December 7, 2010
Chemical 'omics' approaches for understanding protein cysteine oxidation in biologyStephen E Leonard, Kate S CarrollACS Chemical Biology|August 4, 2009
Mining the thiol proteome for sulfenic acid modifications reveals new targets for oxidation in cellsStephen E Leonard, Khalilah G Reddie, Kate S CarrollBiochemistry|October 11, 2014
SH2-catalytic domain linker heterogeneity influences allosteric coupling across the SFK familyA C Register, Stephen E Leonard, Dustin J MalyACS Chemical Biology|June 20, 2014
Divergent modulation of Src-family kinase regulatory interactions with ATP-competitive inhibitorsStephen E Leonard, A C Register, Ratika Krishnamurty, et al.Molecular Biosystems|May 22, 2008
A chemical approach for detecting sulfenic acid-modified proteins in living cellsKhalilah G Reddie, Young Ho Seo, Wilson B Muse Iii, et al.Free Radical Biology & Medicine|January 18, 2012
Inactivation of thiol-dependent enzymes by hypothiocyanous acid: role of sulfenyl thiocyanate and sulfenic acid intermediatesTessa J Barrett, David I Pattison, Stephen E Leonard, et al.Nature Chemical Biology|December 14, 2011
Peroxide-dependent sulfenylation of the EGFR catalytic site enhances kinase activityCandice E Paulsen, Thu H Truong, Francisco J Garcia, et al.Science (New York, N.Y.)|December 8, 2009
A periplasmic reducing system protects single cysteine residues from oxidationMatthieu Depuydt, Stephen E Leonard, Didier Vertommen, et al.Nature Chemical Biology|November 13, 2012
Active site profiling reveals coupling between domains in SRC-family kinasesRatika Krishnamurty, Jennifer L Brigham, Stephen E Leonard, et al.European Journal of Medicinal Chemistry|February 18, 2014
Development of potent and selective Plasmodium falciparum calcium-dependent protein kinase 4 (PfCDPK4) inhibitors that block the transmission of malaria to mosquitoesRama Subba Rao Vidadala, Kayode K Ojo, Steven M Johnson, et al.Pageof 2