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1.
Int J Biol Macromol ; 107(Pt B): 1501-1509, 2018 Feb.
Article in English | MEDLINE | ID: mdl-28987802

ABSTRACT

Suitable peptidases for biotechnological applications are those active at low temperature, in organic solvents, detergents or proteolytic additives. American lobster cathepsin D1 (CD1) is an enzyme highly efficient at 5-50°C and at pH 2.5-5.5. We assessed the effect of common industrial additives on CD1 activity. CD1 was isolated from lobster gastric fluid by chromatography. The proteolytic activity was measured using a fluorogenic specific substrate and the conformation by intrinsic fluorescence. Non-ionic detergents Tween-20 and Triton X-100 stabilize the peptidase activity. Ethanol, methanol and isopropanol [5-15% (v/v)] increased the enzyme activity up to 80%. The enzyme is active until 2.5M urea and is resistant to proteolysis by papain and renin. In this work, a crustacean peptidase that remains active when exposed to different chemical and proteolytic additives is reported, evincing that crustaceans are a good model for discovery of novel stable peptidases for future pharmaceutical, cosmetic and alimentary applications.


Subject(s)
Cathepsin D/metabolism , Detergents/pharmacology , Nephropidae/enzymology , Proteolysis/drug effects , Salts/pharmacology , Solvents/chemistry , Animals , Cathepsin D/chemistry , Cathepsin D/isolation & purification , Enzyme Stability , Fluorescence , Glycerol/pharmacology , Papain/pharmacology , Protein Conformation , Renin/pharmacology , Sodium Chloride/pharmacology , Surface-Active Agents/pharmacology , Urea/pharmacology
2.
J Exp Zool A Comp Exp Biol ; 305(8): 645-54, 2006 Aug 01.
Article in English | MEDLINE | ID: mdl-16788916

ABSTRACT

Decapod crustaceans synthesize highly active proteolytic enzymes in the midgut gland and release at least a part of them into the stomach where they facilitate the first step in peptide hydrolysis. The most common proteinases in the gastric fluid characterized so far are serine proteinases, that is, trypsin and chymotrypsin. These enzymes show highest activities at neutral or slightly alkaline conditions. The presence of acid proteinases, as they prevail in vertebrates, has been discussed contradictorily yet in invertebrates. In this study, we show that acid aspartic proteinases appear in the gastric fluid of several decapods. Lobsters Homarus gammarus showed the highest activity with a maximum at pH 3. These activities were almost entirely inhibited by pepstatin A, which indicates a high share of aspartic proteinases. In other species (Panulirus interruptus, Cancer pagurus, Callinectes arcuatus and Callinectes bellicosus), proteolytic activities were present at acid conditions but were distinctly lower than in H. gammarus. Zymograms at pH 3 showed in each of the studied species at least one, but mostly two-four bands of activity. The apparent molecular weight of the enzymes ranged from 17.8 to 38.6 kDa. Two distinct bands were identified which were inhibited by pepstatin A. Acid aspartic proteinases may play an important role in the process of extracellular digestion in decapod crustaceans. Activities were significantly higher in clawed lobster than in spiny lobster and three species of brachyurans. Therefore, it may be suggested that the expression of acid proteinases is favored in certain groups and reduced in others.


Subject(s)
Aspartic Acid Endopeptidases/analysis , Aspartic Acid Endopeptidases/metabolism , Decapoda/enzymology , Animals , Cysteine Proteinase Inhibitors/pharmacology , Electrophoresis, Polyacrylamide Gel , Enzyme Activation/drug effects , Gastrointestinal Tract/enzymology , Hydrogen-Ion Concentration , Leucine/analogs & derivatives , Leucine/pharmacology , Pepstatins/pharmacology , Protease Inhibitors/pharmacology , Serine Proteinase Inhibitors/pharmacology , Tosyllysine Chloromethyl Ketone/pharmacology , Trypsin/pharmacology
3.
Article in English | MEDLINE | ID: mdl-15621514

ABSTRACT

Trypsin from pyloric caeca of Monterey sardine was purified by fractionation with ammonium sulfate, gel filtration, affinity and ionic exchange chromatography. Fraction 102, obtained from ionic exchange chromatography, generated one band in sodium dodecyl sulphate-polyacrylamide gel electrophoresis (SDS-PAGE) and isoelectric focusing. The molecular mass of the isolated trypsin was 25 kDa and showed esterase-specific activity on Nalpha-p-tosyl-L-arginine methyl ester (TAME) that was 4.5 times greater than amidase-specific activity on N-benzoyl-L-arginine-p-nitroanilide. The purified enzyme was partially inhibited by the serine-protease phenyl-methyl-sulfonyl fluoride (PMSF) inhibitor and fully inhibited by the soybean trypsin inhibitor (SBTI) and benzamidine, but was not inhibited by the metallo-protease inactivator EDTA or the chymotrypsin inhibitor tosyl-L-phenylalanine chloromethyl-ketone. The optimum pH for activity was 8.0 and maximum stability was observed between pH 7 and 8. A marked loss in stability was observed below pH 4 and above pH 11. Activity was optimum at 50 degrees C and lost activity at higher temperatures. The kinetic trypsin constants K(m) and k(cat) were 0.051 mM and 2.12 s(-1), respectively, while the catalytic efficiency (k(cat)/K(m)) was 41 s(-1) mM(-1). General characteristics of the Monterey sardine trypsin resemble those of trypsins from other fish, especially trypsins from the anchovy Engraulis japonica and Engraulis encrasicholus and the sardine Sardinops melanostica.


Subject(s)
Cecum/enzymology , Fishes/physiology , Pylorus/enzymology , Trypsin/metabolism , Ammonium Sulfate/metabolism , Animals , Benzamidines/pharmacology , California , Chromatography, Affinity , Chromatography, Gel , Chromatography, Ion Exchange , Enzyme Inhibitors/pharmacology , Enzyme Stability , Pacific Ocean , Phenylmethylsulfonyl Fluoride/pharmacology , Tosylarginine Methyl Ester/metabolism , Trypsin/isolation & purification , Trypsin Inhibitor, Kunitz Soybean/pharmacology
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