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Biological Chemistry|December 14, 1999
The T-knot motif revisitedF Polticelli, S Pascarella, D Bordo, et al.Biological Chemistry|September 15, 2000
Re-evaluation of amino acid sequence and structural consensus rules for cysteine-nitric oxide reactivityP Ascenzi, M Colasanti, T Persichini, et al.Protein Science : a Publication of the Protein Society|January 13, 2000
Structural determinants of trypsin affinity and specificity for cationic inhibitorsF Polticelli, P Ascenzi, M Bolognesi, et al.European Journal of Biochemistry|February 15, 2000
Serine proteinase inhibition by the active site titrant N alpha-(N, N-dimethylcarbamoyl)-alpha-azaornithine p-nitrophenyl ester. A comparative studyP Ascenzi, G Balliano, C Gallina, et al.Current Protein & Peptide Science|October 9, 2002
Inhibition of cysteine protease activity by NO-donorsP Ascenzi, L Salvati, M Bolognesi, et al.Biological Chemistry|December 29, 1998
Leech antihemostatic proteins share the T-knot scaffold, a disulfide-reinforced structural motifP Ascenzi, M Bolognesi, D Catalucci, et al.European Journal of Biochemistry|October 13, 2000
Characterization of five new low-molecular-mass trypsin inhibitors from white mustard (Sinapis alba L.) seedM Ruoppolo, A Amoresano, P Pucci, et al.European Journal of Biochemistry|June 8, 2001
Modulation of the catalytic activity of cruzipain, the major cysteine proteinase from Trypanosoma cruzi, by temperature and pHL Salvati, M Mattu, F Polticelli, et al.Journal of Molecular Biology|May 6, 1994
Conserved patterns in the Cu,Zn superoxide dismutase familyD Bordo, K Djinović, M BolognesiThe FEBS Journal|October 31, 2008
Human haptoglobin structure and function--a molecular modelling studyF Polticelli, A Bocedi, G Minervini, et al.Pageof 44