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Biochemistry|September 8, 1992
pH and kinetic isotope effects on the reductive half-reaction of D-amino acid oxidaseJ M Denu, P F FitzpatrickThe Journal of Biological Chemistry|April 5, 1986
The mechanism of inactivation of dopamine beta-hydroxylase by hydrazinesP F Fitzpatrick, J J VillafrancaBiochemical and Biophysical Research Communications|August 5, 1996
Kinetic mechanism and substrate specificity of nitroalkane oxidaseC J Heasley, P F FitzpatrickBiochemistry|April 5, 1994
Intrinsic primary, secondary, and solvent kinetic isotope effects on the reductive half-reaction of D-amino acid oxidase: evidence against a concerted mechanismJ M Denu, P F FitzpatrickArchives of Biochemistry and Biophysics|May 1, 1993
Lysine241 of tyrosine hydroxylase is not required for binding of tetrahydrobiopterin substrateS C Daubner, P F FitzpatrickBiochemistry|March 21, 1995
Mechanistic studies of the flavoprotein tryptophan 2-monooxygenase. 2. pH and kinetic isotope effectsJ J Emanuele, P F FitzpatrickBiochemical and Biophysical Research Communications|July 15, 1987
Decreased sensitivity of spontaneously hypertensive rat aortic smooth muscle to vasorelaxation by atriopeptin IIIM D Sauro, D F FitzpatrickArchives of Biochemistry and Biophysics|April 27, 2010
A lysine conserved in the monoamine oxidase family is involved in oxidation of the reduced flavin in mouse polyamine oxidaseMichelle Henderson Pozzi, Paul F FitzpatrickJournal of the American Chemical Society|April 2, 2010
Measurement of the intramolecular isotope effect on aliphatic hydroxylation by Chromobacterium violaceum phenylalanine hydroxylaseAram J Panay, Paul F FitzpatrickJournal of the American Chemical Society|November 25, 2005
Intrinsic isotope effects on benzylic hydroxylation by the aromatic amino acid hydroxylases: evidence for hydrogen tunneling, coupled motion, and similar reactivitiesJorge Alex Pavon, Paul F FitzpatrickPageof 54