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1.
Genet. mol. res. (Online) ; 6(4): 846-858, 2007. ilus, tab
Article in English | LILACS | ID: lil-520062

ABSTRACT

Bowman-Birk inhibitors (BBIs) are cysteine-rich and highly cross-linked small proteins that function as specific pseudosubstrates for digestive proteinases. They typically display a "double-headed" structure containing an independent proteinase-binding loop that can bind and inhibit trypsin, chymotrypsin and elastase. In the present study, we used computational biology to study the structural characteristics and dynamics of the inhibition mechanism of the small BBI loop expressing a 35-amino acid polypeptide (ChyTB2 inhibitor) which has coding region for the mutated chymotrypsin-inhibitory site of the soybean BBI. We found that in the BBI-trypsin inhibition complex, the most important interactions are salt bridges and hydrogen bonds, whereas in the BBI-chymotrypsin inhibition complex, the most important interactions are hydrophobic. At the same time, ChyTB2 mutant structure maintained the individual functional domain structure and excellent binding/inhibiting capacities for trypsin and chymotrypsin at the same time. These results were confirmed by enzyme-linked immunosorbend assay experiments. The results showed that modeling combined with molecular dynamics is an efficient method to describe, predict and then obtain new proteinase inhibitors. For such study, however, it is necessary to start from the sequence and structure of the mutant interacting relatively strongly with both trypsin and chymotrypsin for designing the small BBI-type inhibitor against proteinases.


Subject(s)
Animals , Endopeptidases/metabolism , Trypsin Inhibitor, Bowman-Birk Soybean/chemistry , Models, Molecular , Amino Acid Sequence , Cattle , Cluster Analysis , Drug Design , Trypsin Inhibitor, Bowman-Birk Soybean/pharmacology , Trypsin Inhibitors/chemistry , Chymotrypsin/antagonists & inhibitors
2.
Mem. Inst. Oswaldo Cruz ; 86(supl.2): 207-209, 1991. ilus, tab
Article in English | LILACS | ID: lil-623972

ABSTRACT

Serine proteinase inhitors, in the seeds of several Leguminosae from the Pantanal region (West Brazil), were studied using bovine trypsin, a digestive enzyme, Factor XIIa and human plasma Kallikrein, two blood clotting factors. The inhibitors were purified from Enterolobium contortisiliquum (Mr=23,000), Torresea cearensis (Mr = 13,000), Bauhinia pentandra (Mr = 20,000) and Bauhinia bauhinioides (Mr = 20,000). E. contortisiliquum inhibitor inactivates all three enzymes, whereas the T. cearensis inhibitor inactivates trypsin and Factor XSSa, but does nor affect plasma kallikrein; both Bauhinia inhibitors, on the other hand, inactivate trypsin and plasma kallikrein but only the Bpentandra inhibitor affects Factor XIIa. Ki values were calculated between 10 [raised to the power of] -7 and 10 [raised to the power of] -8 M.


Subject(s)
Blood Coagulation , Bauhinia , Proteinase Inhibitory Proteins, Secretory
3.
Braz. j. med. biol. res ; 22(9): 1069-71, 1989. ilus
Article in English | LILACS | ID: lil-83179

ABSTRACT

An inhibitor against serine proteinases was purified from Torresea cearensis by affinity chromatography on trypsin-Sepharose. The protein is a single polypeptide of molecular weight 13,600 after reduction and has a high content of cysteine residues. Both trypsin (Ki = 0.34 nM) and chymotrypsin (Ki = 0.15 micronM) are inhibited by Torresea cearensis inhibitor. Blood clotting factor XII is also inhibited (Ki = 24 micronM), but not plasma kallikrein, tissue kallikrein or thrombin. The stoichiometry of the inhibitorproteinase complex with trypsin is 1:1


Subject(s)
Seeds/analysis , Kallikreins/blood , Fabaceae , Factor XII/antagonists & inhibitors , Partial Thromboplastin Time , Trypsin Inhibitors/isolation & purification , Trypsin Inhibitors/pharmacology
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