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Structural properties of trypsin from cold-adapted fish, arabesque greenling (Pleurogrammus azonus)

  • Gaku Kanno
  • , Hideki Kishimura
  • , Seiichi Ando
  • , Sappasith Klomklao
  • , Sitthipong Nalinanon
  • , Soottawat Benjakul
  • , Byung Soo Chun
  • , Hiroki Saeki
  • Hokkaido University
  • Kagoshima University
  • Thaksin University
  • Prince of Songkla University
  • Pukyong National University

Research output: Contribution to journalArticlepeer-review

10 Citations (Scopus)

Abstract

A cDNA clone encoding trypsin (AG-T) was isolated from the pyloric ceca of cold-adapted fish, arabesque greenling (Pleurogrammus azonus). The cDNA was composed of 892 bp with an open reading frame of 729 bp at nucleotide positions 25-753. Similar to all the known trypsin, the AG-T seemed to be synthesized as preproenzyme that contains a hydrophobic signal peptide, an activation pentapeptide and a mature trypsin of 222 amino acid residues. The AG-T also completely conserved the major structural features common to trypsin such as the catalytic triad (His57, Asp102, and Ser195), the obligatory Asp189 and twelve Cys residues. On the other hand, the AG-T possessed the deletion of Tyr151 and substitution of Pro152 for Gly in the autolysis loop when aligned with the sequence of tropical-zone fish and bovine trypsins. In addition, Val75 concerned in a combination with calcium ion was exchanged for Ala in the AG-T, and the content of positively charged amino acid residues at the calcium-binding site of the AG-T was three times higher than those of tropical-zone fish trypsins. Moreover, the ratio between charged and hydrophobic amino acid residues in the N-terminal region of the AG-T was also higher than those of temperate-zone fish and tropical-zone fish trypsins. Such structural properties of the AG-T would contribute to its low thermostability.

Original languageEnglish
Pages (from-to)381-388
Number of pages8
JournalEuropean Food Research and Technology
Volume232
Issue number3
DOIs
Publication statusPublished - Mar 2011
Externally publishedYes

Keywords

  • Arabesque greenling
  • Cold-adaptation
  • Pleurogrammus azonus
  • Primary structure
  • Pyloric caecum
  • Thermostability
  • Trypsin

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