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Proteins|June 1, 1995
Exploring the binding preferences/specificity in the active site of human cathepsin EC Rao-Naik, K Guruprasad, B Batley, et al.Proceedings of the National Academy of Sciences of the United States of America|February 1, 1988
Use of synthetic peptides to identify an N-terminal epitope on mouse gamma interferon that may be involved in functionH I Magazine, J M Carter, J K Russell, et al.Protein Science : a Publication of the Protein Society|February 1, 1993
Exploration of subsite binding specificity of human cathepsin D through kinetics and rule-based molecular modelingP E Scarborough, K Guruprasad, C Topham, et al.The Biochemical Journal|September 15, 1988
Identification of the aspartic proteinases from human erythrocyte membranes and gastric mucosa (slow-moving proteinase) as catalytically equivalent to cathepsin ER A Jupp, A D Richards, J Kay, et al.Biochemistry|December 19, 2001
Inhibitor complexes of the Pseudomonas serine-carboxyl proteinaseA Wlodawer, M Li, A Gustchina, et al.Biochimica Et Biophysica Acta|April 25, 1997
Escape mutants of HIV-1 proteinase: enzymic efficiency and susceptibility to inhibitionS I Wilson, L H Phylip, J S Mills, et al.The Journal of Biological Chemistry|February 18, 1994
Interactions of substrates and inhibitors with a family of tethered HIV-1 and HIV-2 homo- and heterodimeric proteinasesJ T Griffiths, L A Tomchak, J S Mills, et al.Nature Structural Biology|February 3, 2000
The aspartic proteinase from Saccharomyces cerevisiae folds its own inhibitor into a helixM Li, L H Phylip, W E Lees, et al.The Biological Bulletin|January 10, 2018
The Sequencing, Synthesis, and Biological Actions of an ANP-Like Peptide Isolated from the Brain of the Killifish Fundulus heteroclitusD A Price, K E Doble, T D Lee, et al.FEBS Letters|July 30, 1990
Sub-site preferences of the aspartic proteinase from the human immunodeficiency virus, HIV-1J Konvalinka, P Strop, J Velek, et al.Pageof 9