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abz-GGFLRKHGQ-EDDnp
Known as:
2-aminobenzoyl-glycyl-glycyl-phenylalanyl-leucyl-arginyl-lysyl-histidyl-glycyl-glutaminyl-dinitrophenylethylenediamine
, abz-Gly-Gly-Phe-Leu-Arg-Lys-His-Gly-Gln-EDDnp
National Institutes of Health
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1 relation
Broader (1)
Oligopeptides
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
2013
2013
Substrate specificity studies of the cysteine peptidases falcipain-2 and falcipain-3 from Plasmodium falciparum and demonstration of their kininogenase activity.
S. S. Cotrin
,
I. E. Gouvea
,
+8 authors
A. K. Carmona
Molecular and biochemical parasitology (Print)
2013
Corpus ID: 38201021
2011
2011
Discriminating between the activities of human cathepsin G and chymase using fluorogenic substrates
B. Korkmaz
,
G. Jégot
,
+6 authors
F. Gauthier
The FEBS Journal
2011
Corpus ID: 21174700
Cathepsin G (CG) (EC 3.4.21.20) and chymase (EC 3.4.21.39) are two closely‐related chymotrypsin‐like proteases that are released…
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2008
2008
S1′ and S2′ subsite specificities of human plasma kallikrein and tissue kallikrein 1 for the hydrolysis of peptides derived from the bradykinin domain of human kininogen
A. Lima
,
F. Alves
,
+5 authors
M. Juliano
Biological chemistry
2008
Corpus ID: 7525203
Abstract The S1′ and S2′ subsite specificities of human tissue kallikrein 1 (KLK1) and human plasma kallikrein (HPK) were…
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Highly Cited
2004
Highly Cited
2004
Comparative substrate specificity analysis of recombinant human cathepsin V and cathepsin L.
L. Puzer
,
S. S. Cotrin
,
+6 authors
A. K. Carmona
Archives of Biochemistry and Biophysics
2004
Corpus ID: 24373967
2003
2003
Kinetic characterization of factor Xa binding using a quenched fluorescent substrate based on the reactive site of factor Xa inhibitor from Bauhinia ungulata seeds.
M. Oliva
,
S. Andrade
,
+5 authors
C. Sampaio
Current Medicinal Chemistry
2003
Corpus ID: 39841156
The specific Kunitz Bauhinia ungulata factor Xa inhibitor (BuXI) and the Bauhinia variegata trypsin inhibitor (BvTI) blocked the…
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2001
2001
Human tissue kallikrein S1 subsite recognition of non-natural basic amino acids.
R. L. Melo
,
R. C. Barbosa Pozzo
,
+5 authors
M. Juliano
Biochemistry
2001
Corpus ID: 25781142
We explored the unique substrate specificity of the primary S(1) subsite of human urinary kallikrein (hK1), which accepts both…
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2000
2000
α1-Antichymotrypsin and Kallistatin Hydrolysis by Human Cathepsin D
Daniel Carvalho Pimenta
,
V. Chen
,
J. Chao
,
M. Juliano
,
L. Juliano
Journal of Protein Chemistry
2000
Corpus ID: 41612737
In the present paper, we demonstrate that α1-antichymotrypsin, a serpin with high inhibitory specificity toward cathepsin G, and…
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1999
1999
Discrimination of cruzipain, the major cysteine proteinase of Trypanosoma cruzi, and mammalian cathepsins B and L, by a pH-inducible fluorogenic substrate of trypanosomal cysteine proteinases.
C. Serveau
,
G. Lalmanach
,
I. Hirata
,
J. Scharfstein
,
M. Juliano
,
F. Gauthier
European Journal of Biochemistry
1999
Corpus ID: 37129189
The substrate specificity of cruzipain, the major cysteine proteinase of Trypanosoma cruzi, was investigated using a series of…
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1997
1997
Kininogen-derived fluorogenic substrates for investigating the vasoactive properties of rat tissue kallikreins--identification of a T-kinin-releasing rat kallikrein.
A. el Moujahed
,
M. Brillard-Bourdet
,
+5 authors
F. Gauthier
European Journal of Biochemistry
1997
Corpus ID: 13129534
Peptide substrates with intramolecularly quenched fluorescence that reproduce the rat kininogen sequences at both ends of the…
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1992
1992
Substrate specificities of tissue kallikrein and T-kininogenase: their possible role in kininogen processing.
J. Chagas
,
I. Hirata
,
+5 authors
E. Prado
Biochemistry
1992
Corpus ID: 24661943
The present studies demonstrate the importance of subsite interactions in determining the cleavage specificities of kallikrein…
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