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Biochemistry|April 12, 1994
Evidence for the interaction of valine-10 in cystatin C with the S2 subsite of cathepsin BP Lindahl, D Ripoll, M Abrahamson, et al.FEBS Letters|June 28, 2000
The active-site residue Cys-29 is responsible for the neutral-pH inactivation and the refolding barrier of human cathepsin BJ Song, P Xu, H Xiang, et al.The Biochemical Journal|November 1, 1984
Comparative resonance Raman spectroscopic and kinetic studies of acyl-enzymes involving papain, actinidin and papaya peptidase IIK Brocklehurst, P R Carey, H H Lee, et al.Journal of Medicinal Chemistry|March 19, 1993
Epoxysuccinyl dipeptides as selective inhibitors of cathepsin BB J Gour-Salin, P Lachance, C Plouffe, et al.Biophysical Journal|July 1, 1992
Resonance Raman spectroscopic and kinetic consequences of a nitrogen ... sulphur enzyme-substrate contact in a series of dithioacylpapainsP J Tonge, B Gour-Salin, P Lachance, et al.Biochemistry|January 12, 1988
Conformational states of N-acylalanine dithio esters: correlation of resonance Raman spectra with structuresH Lee, R H Angus, A C Storer, et al.Structure (London, England : 1993)|April 15, 1996
Structure of rat procathepsin B: model for inhibition of cysteine protease activity by the proregionM Cygler, J Sivaraman, P Grochulski, et al.The Biochemical Journal|May 1, 1991
A model to explain the pH-dependent specificity of cathepsin B-catalysed hydrolysesH E Khouri, C Plouffe, S Hasnain, et al.Biotechnology and Applied Biochemistry|June 1, 1992
Mechanistic and structural studies on Rhodococcus ATCC 39484 nitrilaseD E Stevenson, R Feng, F Dumas, et al.The Biochemical Journal|January 1, 1986
Chymopapain A. Purification and investigation by covalent chromatography and characterization by two-protonic-state reactivity-probe kinetics, steady-state kinetics and resonance Raman spectroscopy of some dithioacyl derivativesB S Baines, K Brocklehurst, P R Carey, et al.Pageof 8