## Background: In this paper, we describe cDNA cloning of a new anionic trypsin and a collagenolytic serine protease from king crab Paralithodes camtschaticus and the elucidation of their primary structures. Constructing the phylogenetic tree of these enzymes was undertaken in order to prove the e
Modeling of protease I collagenolytic enzyme from the fiddler crabUca pugilator
โ Scribed by B. Arnoux; A. Lecroisey; A. Ducruix
- Book ID
- 104631665
- Publisher
- Springer Netherlands
- Year
- 1990
- Tongue
- English
- Weight
- 594 KB
- Volume
- 4
- Category
- Article
- ISSN
- 0920-654X
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โฆ Synopsis
Collagenolytic protease I from the fiddler crab Uca pugilator belongs to the serine proteases of the trypsin family. A graphic molecular model was built using information from sequences and X-ray structures of four homologous proteins which were superimposed to define structurally conserved regions. Protease I sequence was aligned, with sequences of the model proteins, without permitting any deletion or insertion in these regions. Elastase e-carbon chain was selected as a template molecule. For the structurally variable regions, fragments of the four homologous proteins which were 'closest' in sequence were selected. Intramolecular steric hindrance, that resulted from the substitution of the residues of the templates by protease I residues, was corrected by adjustment of the side-chain conformational angles. The model was then optimized by energy minimization. The primary specificity pocket in the model of collagenolytic protease I predicts a substrate preference for both P1 hydrophobic and positively charged residues which is in agreement with the biochemical observations. As soybean trypsin inhibitor (STI) is known to inhibit collagenolytic protease I, a tentative model of the complex was constructed and possibilities of interaction examined.
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The debriding activity of the protease complex produced from the hepatopancreas of the king crab Paralirhodes camtschatica was evaluated in vivo. The results clearly showed that the crab preparation had a high debriding ability. Individual proteases were isolated chromatographically from the crab co