Aoyagi, T. and H. Umezawa , “Structures and Activities of Protease Inhibitors of Microbial Origin,” In: Proteases and Biological Control, vol. 2, Reich, E., et al., eds., Cold Spring Harbor, NY: Cold Spring Harbor Laboratory Press, pp. 429-454 (1975). |
Bachovchin, W. et al., “Nitrogen-15 NMR Spectroscopy of the Catalytic-Triad Histidine of a Serine Protease in Peptide Boronic Acid Inhibitor Complexes,” Biochem. 27:7689-7697 (1988). |
Berry, S. et al., “Interaction of Peptide Boronic Acids With Elastase: Circular Dichroism Studies,” Proteins: Structure. Function. and Genetics 4:205-210 (1988). |
Castro, B. et al., “Peptide Coupling Reagents VI. A Novel, Cheaper Preparation of Benzotriazolyloxytris(dimethylamino)phosphonium Hexafluorophosphate (BOP Reagent),” Synthesis 11:751-752 (1976). |
Dick, L. et al., “Degradation of Oxidized Insulin B Chain by the Multiproteinase Complex Macropain (Proteasome),” Biochem. 30:2725-2734 (1991). |
Goldberg, A., “The mechanism and functions of ATP-dependent proteases in bacterial and animal cells,” Eur. J. Biochem. 203:9-23 (1992). |
Goldberg, A. and K. Rock, “Proteolysis, Proteasomes, and antigen presentation,” Nature 357:375-379 (1992). |
Hershko, A. and A. Ciechanover, “The Ubiquitin System for Protein Degradation,” Annu. Rev. Biochem. 61:761-807 (1992). |
Kettner, C. and A. Shenvi, “Inhibition of the Serine Proteases Leukocyte Elastase, Pancreatic Elastase, Cathepsin G, and Chymotrypsin by Peptide Boronic Acids,” J. Biol. Chem. 259:15106-15114 (1984). |
Kettner, C. et al., “Kinetic Properties of the Binding of α-Lytic Protease to Peptide Boronic Acids, ” Biochem. 27:7682-7688 (1988). |
Kinder, D. and J. Katzenellenbogen, “Acylamino Boronic Acids and Difluoroborane Analogues of Amino Acids: Potent Inhibitors of Chymotrypsin and Elastase,” J. Med. Chem. 28:1917-1925 (1985). |
Kinder, D. et al., “Antimetastic Activity of Boro-Amino Acid Analog Protease Inhibitors against B16BL6 Melanoma in vivo,” Invasion Metastasis 12:309-319 (1992). |
Li, X. et al., “Isolation and Characterization of a Novel Endogenous Inhibitor of the Proteasome,” Biochem. 30:9709-9715 (1991). |
Lim, M. et al., “The Solution Conformation of (D)Phe-Pro-Containing Peptides: Implications on the Activity of Ac-(D)Phe-Pro-boroArg-OH, a Potent Thrombin Inhibitor,” J. Med. Chem. 36:1831-1838 (Jun. 25, 1993). |
Matteson, D. and K. Sadhu, “(R)-1-Acetamido-2-phenylethaneboronic Acid. A Specific Transition-State Analogue for Cymotrypsin,” J. Am. Chem. Soc. 103:5241-5242 (1981). |
Murakami, K. and J. Etlinger, “Endogenous inhibitor of nonlysosomal high molecular weight protease and calcium-dependent protease,” Proc. Natl. Acad. Sci. USA 83:7588-7592 (1986). |
Rechsteiner, M., “Ubiquitin-Mediated Pathways for Intracellular Proteolysis,” Ann. Rev. Cell Biol. 3:1-30, (1987). |
Rivett, A., “The Multicatalytic Proteinase. Multiple Proteolytic Activities,” J. Biol. Chem. 264:12215-12219 (1989). |
Rivett, A., “The Multicatalytic Proteinase of Mammalian Cells,” Arch. Biochem. Biophys. 268:1-8 (1989). |
Rock, K. et al., “Inhibitors of the Proteasome Block the Degradation of Most Cell Proteins and the Generation of Peptides Presented on MHC Class I Molecules,” Cell 78:761-771 (Sep. 9, 1994). |
Sheehan, J. et al., “A Rapid Synthesis of Oligopeptide Derivatives without Isolation of Intermediates,” J. Am. Chem. Soc. 87:2492-2493 (1965). |
Takahashi, L. et al., “Crystallographic Analysis of the Inhibition of Porcine Pancreatic Elastase by a Peptidyl Boronic Acid: Structure of a Reaction Intermediate,” Biochem. 28:7610-7617 (1989). |
Tanaka, K. et al., “Proteasome: Protein and Gene Structures,” New Biol. 4:173-187 (1992). |
Tsai, D. et al., “Diastereoselection in Reactions of Pinanediol Dichloromethaneboronate,” Organometallics 2:1543-1545 (1983). |
Veale, C. et al., “Nonpeptide Inhibitors of Human Leukocyte Elastase. 5. Design, Synthesis, and x-ray Crystallography of a Series of Orally Active 5-Aminopyrimidin-6-one-Containing Trifluoromethyl Ketones,” J. Med. Chem. 38:98-108 (Jan. 6, 1995). |
Tsilikounas, E. et al., “Identification of Serine and Histidine Adducts in Complexes of Trypsin and Trypsinogen with Peptide NonPeptide Boronic Acid Inhibitors by 1H NMR Spectroscopy,” Biochem. 31:12839-12846 (1992). |