Carboxypeptidase Activity of the Zinc Metalloprotease in the Cement Precursor Secretion of the Barnacle, Chthamalus fragilis Darwin |
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Authors: | William J. Dougherty |
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Affiliation: | aDepartment of Cell Biology and Anatomy, Medical University of South Carolina, Charleston, SC 29425, U.S.A. |
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Abstract: | The liquid cement precursor secretion (CPS) of the adult barnacle, Chthamalus fragilis, exhibits Zn-metalloprotease activity. To assess the bond specificity of the Zn-metalloprotease, samples of liquid CPS were collected by glass micropipette from the exposed bases of adult barnacles and incubated in 50 mM Tris buffer, pH 8.0, containing 10 mM Ca++, at 27°C or 20°C for 6 or 24 hr. in the presence of fluorescent dye-labeled synthetic C-1 and A-1 PepTag peptides. These peptides have a net positive charge and migrate toward the anode during agarose gel electrophoresis. When incubated with the C-1 PepTag peptide, CPS samples generated F1 hydrolysis fragments that failed to migrate during electrophoresis in 0.8% agarose gels, indicating the presence of proteolytic activity in the CPS. Proteolysis of the C-1 peptide was inhibited by 2.0 mM orthophenanthroline in the presence of 10 mM Ca++ ions. No hydrolysis products were generated when samples of CPS were incubated in the presence of the A-1 PepTag peptide. This suggested that the CPS contained a Zn-metalloprotease that exhibited a preference for the carboxy-terminal lysine of the C-1 PepTag peptide. There were no indications of aminopeptidase or endopeptidase activities in the barnacle CPS. When incubated with hippuryl-lysine and hippuryl-arginine substrates, samples of CPS gave activities ranging from 111 to 319 μmol hippuric acid formed/min/mg of CPS protein. These observations indicate that the CPS of C. fragilis contains a Zn-metallo-exoprotease with a preference for carboxy-terminal basic amino acids. |
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Keywords: | Barnacle liquid cement precursor secretion Zn-metalloprotease synthetic peptides hippuryl substrates carboxypeptidase |
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