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The Journal of Biological Chemistry
|
May 25, 1979
Mapping the extended substrate binding site of cathepsin G and human leukocyte elastase. Studies with peptide substrates related to the alpha 1-protease inhibitor reactive site
K Nakajima, J C Powers, B M Ashe, et al.
Hoppe-Seyler'S Zeitschrift Fur Physiologische Chemie
|
September 1, 1984
Effect of neutrophil cathepsin G on elastin degradation by neutrophil elastase
C F Reilly, Y Fukunaga, J C Powers, et al.
Journal of Medicinal Chemistry
|
January 21, 1994
Novel amidine-containing peptidyl phosphonates as irreversible inhibitors for blood coagulation and related serine proteases
J Oleksyszyn, B Boduszek, C M Kam, et al.
Analytical Biochemistry
|
October 15, 1979
Sensitive substrates for human leukocyte and porcine pancreatic elastase: a study of the merits of various chromophoric and fluorogenic leaving groups in assays for serine proteases
M J Castillo, K Nakajima, M Zimmerman, et al.
Molecular Immunology
|
June 1, 1992
Sulfonyl fluoride serine protease inhibitors inactivate RNK-16 lymphocyte granule proteases and reduce lysis by granule extracts and perforin
G R Ewoldt, U Winkler, J C Powers, et al.
International Immunopharmacology
|
May 23, 2001
Dipeptide vinyl sulfones suitable for intracellular inhibition of dipeptidyl peptidase I
G E Korver, C M Kam, J C Powers, et al.
Molecular Immunology
|
August 1, 1989
Selective isocoumarin serine protease inhibitors block RNK-16 lymphocyte granule-mediated cytolysis
D Hudig, N J Allison, C M Kam, et al.
Biochemistry
|
March 8, 1991
Structural study of porcine pancreatic elastase complexed with 7-amino-3-(2-bromoethoxy)-4-chloroisocoumarin as a nonreactivatable doubly covalent enzyme-inhibitor complex
J Vijayalakshmi, E F Meyer, C M Kam, et al.
Journal of the American Chemical Society
|
January 9, 1974
Inhibition of chymotrypsin A-alpha with N-acyl- and N-peptidyl-2-phenylethyl amines. Subsite binding free energies
J C Powers, B L Baker, J Brown, et al.
Biochemistry
|
March 10, 1987
Catalysis by human leukocyte elastase: mechanistic insights into specificity requirements
R L Stein, A M Strimpler, H Hori, et al.
Page
of 17
Search research articles
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Showing results (61-70 of 166) with videos related to
Sort By:
Page
of 17
The Journal of Biological Chemistry
|
May 25, 1979
Mapping the extended substrate binding site of cathepsin G and human leukocyte elastase. Studies with peptide substrates related to the alpha 1-protease inhibitor reactive site
K Nakajima, J C Powers, B M Ashe, et al.
Hoppe-Seyler'S Zeitschrift Fur Physiologische Chemie
|
September 1, 1984
Effect of neutrophil cathepsin G on elastin degradation by neutrophil elastase
C F Reilly, Y Fukunaga, J C Powers, et al.
Journal of Medicinal Chemistry
|
January 21, 1994
Novel amidine-containing peptidyl phosphonates as irreversible inhibitors for blood coagulation and related serine proteases
J Oleksyszyn, B Boduszek, C M Kam, et al.
Analytical Biochemistry
|
October 15, 1979
Sensitive substrates for human leukocyte and porcine pancreatic elastase: a study of the merits of various chromophoric and fluorogenic leaving groups in assays for serine proteases
M J Castillo, K Nakajima, M Zimmerman, et al.
Molecular Immunology
|
June 1, 1992
Sulfonyl fluoride serine protease inhibitors inactivate RNK-16 lymphocyte granule proteases and reduce lysis by granule extracts and perforin
G R Ewoldt, U Winkler, J C Powers, et al.
International Immunopharmacology
|
May 23, 2001
Dipeptide vinyl sulfones suitable for intracellular inhibition of dipeptidyl peptidase I
G E Korver, C M Kam, J C Powers, et al.
Molecular Immunology
|
August 1, 1989
Selective isocoumarin serine protease inhibitors block RNK-16 lymphocyte granule-mediated cytolysis
D Hudig, N J Allison, C M Kam, et al.
Biochemistry
|
March 8, 1991
Structural study of porcine pancreatic elastase complexed with 7-amino-3-(2-bromoethoxy)-4-chloroisocoumarin as a nonreactivatable doubly covalent enzyme-inhibitor complex
J Vijayalakshmi, E F Meyer, C M Kam, et al.
Journal of the American Chemical Society
|
January 9, 1974
Inhibition of chymotrypsin A-alpha with N-acyl- and N-peptidyl-2-phenylethyl amines. Subsite binding free energies
J C Powers, B L Baker, J Brown, et al.
Biochemistry
|
March 10, 1987
Catalysis by human leukocyte elastase: mechanistic insights into specificity requirements
R L Stein, A M Strimpler, H Hori, et al.
Page
of 17