4.2 Article

Trichuris suis:: A secretory chymotrypsin/elastase inhibitor with potential as an immunomodulator

Journal

EXPERIMENTAL PARASITOLOGY
Volume 95, Issue 1, Pages 36-44

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1006/expr.2000.4502

Keywords

chymotrypsin (EC3.4.21.1) inhibitor; elastase (EC3.4.21.36) inhibitor; chymase inhibitor; cathepsin G inhibitor; nematode; in vitro cultivation; excretory/secretory products; Apis mellifera; honeybee

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A serine protease inhibitor, termed TsCEI, was purified from adult-stage Trichuris suis by acid precipitation, affinity chromatography (elastase-agarose), and reverse-phase HPLC. The molecular weight of TsCEI was estimated at 6.437 kDa by laser desorption mass spectrometry. TsCEI potently inhibited both chymotrypsin (K-i = 33.4 pM) and pancreatic elastase (K-i = 8.32 nM). Neutrophil elastase, chymase (mouse mast cell protease-1, mMCP-1), and cathepsin C were also inhibited by TsCEI, whereas trypsin, thrombin, and factor Xa were not. The cDNA-derived amino acid sequence of the mature TsCEI consisted of 58 residues including 9 cysteine residues with a molecular mass of 6.196 kDa. TsCEI displayed 48% sequence identity to a previously characterized trypsin/chymotrypsin inhibitor of T. suis, TsTCI. TsCEI showed 36% sequence identity to a protease inhibitor from the hemolymph of the honeybee Apis mellifera. Sequence similarity was also detected with the trypsin/thrombin inhibitor of the European frog Bombina bombina, the elastase isoinhibitors of the nematode Anisakis simplex, and the chymotrypsin/elastase and trypsin inhibitors of the nematode Ascaris suum. The inhibitors of T. suis, an intestinal parasite of swine, may function as components of a parasite defense mechanism by modulating intestinal mucosal mast cell-associated, protease-mediated, host immune responses.

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