Carboxypeptidase S-1 from Penicillium janthinellum: Enzymatic properties in hydrolysis and aminolysis reactions
- 1 January 1988
- journal article
- conference paper
- Published by Springer Nature in Carlsberg Research Communications
- Vol. 53 (5) , 309-320
- https://doi.org/10.1007/bf02904436
Abstract
Carboxypeptidase S-1 from Pencillium janthinellum has been isolated by affinity chromatography and characterized. The enzyme activity is unusually stable in organic solvents, e.g. 80% methanol. The hydrolysis of peptide substrates is apparently dependent on three ionizable groups. One group, with pKa of 4.0–4.5, is a catalytically essential residue in its deprotonated form, and another group with a pKa of 6.5–7.0 functions in its protonated form, apparently as the binding site for the C-terminal carboxylate group of peptide substrates. The third group, with a pKa of 5.0–5.5, appears to be a carboxylic acid group located at the S1 binding site. Deprotonation of this group to form a negatively charged carboxylate group has an adverse effect on the hydrolysis of substrates with hydrophobic amino acid residues at the P1 position and a beneficial effect on the hydrolysis of substrates with the positively charged arginyl or lysyl residues at this position. The substrate preference of the enzyme is consequently pH dependent. At pH 6.0 (the optimum for ester hydrolysis) the enzyme is essentially specific for Bz-X-OMe substrates where X = Arg and Lys. Using amino acids and amino acid amides as nucleophiles carboxypeptidase S-1 efficiently catalyses the formation of peptide bonds by aminolysis of peptides (transpeptidation reactions) and peptide esters provided that the substrate contains a basic amino acid residue at the P1 position, e.g. Bz-Arg-OBu and Bz-Arg-Leu-OH. With several nucleophiles the fractions of aminolysis exceed those previously reported in similar studies with carboxypeptidase Y and malt carboxypeptidase II.This publication has 26 references indexed in Scilit:
- Malt carboxypeptidase catalyzed aminolysis reactionsCarlsberg Research Communications, 1984
- Semisynthesis of human insulin utilizing chemically modified carboxypeptidase YCarlsberg Research Communications, 1984
- Carboxypeptidase Y catalyzed transpeptidation and condensation reactionsCarlsberg Research Communications, 1984
- Influence of guanidine derivatives on the specificity of malt carboxypeptidaseCarlsberg Research Communications, 1983
- Isolation of a carboxypeptidase from malted barley by affinity chromatographyCarlsberg Research Communications, 1983
- Carboxypeptidase Y catalyzed C-terminal modification in the B-chain of porcine insulinCarlsberg Research Communications, 1981
- Carboxypeptidase Y catalyzed C-terminal modifications of peptidesCarlsberg Research Communications, 1981
- Influence of the substrate structure on carboxypeptidase Y catalyzed peptide bond formationCarlsberg Research Communications, 1980
- Carboxypeptidase Y catalyzed transpeptidations and enzymatic peptide synthesisCarlsberg Research Communications, 1980
- Enzymatic peptide synthesis. Carboxypeptidase Y catalyzed formation of peptide bondsCarlsberg Research Communications, 1979