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Biochemistry|February 5, 1991
Cooperativity of papain-substrate interaction energies in the S2 to S2' subsitesP J Berti, C H Faerman, A C StorerFEBS Letters|September 9, 1996
Delineating functionally important regions and residues in the cathepsin B propeptide for inhibitory activityY Chen, C Plouffe, R Ménard, et al.The Journal of Biological Chemistry|May 10, 1979
The use of resonance Raman spectroscopy to monitor catalytically important bonds during enzymic catalysis. Application to the hydrolysis of methyl thionohippurate by papainA C Storer, W F Murphy, P R CareyThe Biochemical Journal|December 1, 1976
A new method of quantitative affinity chromatography and its application to the study of myosinR C Bottomley, A C Storer, I P TrayerThe Biochemical Journal|November 1, 1975
The nature of experimental error in enzyme kinetic measurmentsA C Storer, M G Darlison, A Cornish-BowdenBiochemistry|June 9, 1981
Resonance Raman and electronic absorption spectral studies of some beta-(2-furyl)acryloylglyceraldehyde-3-phosphate dehydrogenasesA C Storer, D J Phelps, P R CareyThe Journal of Biological Chemistry|July 15, 1986
Benzoylamidoacetonitrile is bound as a thioimidate in the active site of papainJ R Brisson, P R Carey, A C StorerProtein Engineering|December 1, 1995
Regulation of protein tyrosine phosphatase 1C: opposing effects of the two src homology 2 domainsM J Pregel, S H Shen, A C StorerBiochemistry|January 12, 1988
Comparison of the kinetics of the papain-catalyzed hydrolysis of glycine- and alanine-based esters and thiono estersA C Storer, R H Angus, P R CareyThe Biochemical Journal|January 1, 1981
Kinetic and physical properties of the L-malate-NAD+ oxidoreductase from Methanospirillum hungatii and comparison with the enzyme from other sourcesA C Storer, G D Sprott, W G MartinPageof 8