Kinetics and specificity of serine proteases in peptide synthesis catalyzed in organic solvents
- 1 April 1989
- journal article
- research article
- Published by Wiley in European Journal of Biochemistry
- Vol. 181 (1) , 207-213
- https://doi.org/10.1111/j.1432-1033.1989.tb14712.x
Abstract
Initial rates of peptide-bond synthesis catalyzed by poly(ethylene-glycol)-modified chymotrypsin in benzene were determined using high-performance liquid chromatography. Enzymatic synthesis of N-benzoyl-L-tyrosyl-L-phenylalanine amide from N-benzoyl-L-tyrosine ethyl ester and L-phenylalanine amide was found to obey Michaelis-Menten kinetics an to be consistent with a ping-pong mechanism modified by a hydrolytic branch. The catalytic activity of modified chymotrypsin was dependent on both water concentration and type of organic solvent, the highest synthesis rate being obtained in toluene. Since the chymotrypsin specificity in the organic phase was actually altered, the enzyme''s apparent kinetic parameters were determined for different substrates and compared to those obtained with other serine proteases in benzene. Both N-benzoyl-L-tyrosine ethyl ester and N-.alpha.-benzoyl-L-lysine methyl ester were comparable acyl donors in benzene and the (kcat/Km)app value of modified chymotrypsin was only 10-fold smaller than that obtained with poly(ethylene glycol)-modified trypsin in the synthesis of N-.alpha.-benzoyl-L-lysyl-L-phenylalanine amide. The change in chymotrypsin specificity was also confirmed through the binding of trypsin inhibitors in benzene. The overall results suggest that hydrophobic bonding between the enzyme and its substrate should not be taken into account during catalysis in the organic phase. In general, if hydrophobic interactions are involved in the binding of substrates to the active site in aqueous media, the replacement of water by hydrophobic solvents will induce some change in enzyme specificity. Moreover, secondary residues of enzyme-binding sites may also exert a significant influence on specificity since, as observed in this study, chymotrypsin exhibited high affinity for cationic substrates and cationic inhibitors as well in apolar solvents.This publication has 29 references indexed in Scilit:
- On the size of the active site in proteases. I. PapainPublished by Elsevier ,2005
- Unusual specificity of polyethylene glycol-modified thermolysin in peptide synthesis catalyzed in organic solventsBiotechnology Letters, 1988
- Rules for optimization of biocatalysis in organic solventsBiotechnology & Bioengineering, 1987
- On optimizing organic solvents in multi-liquid-phase biocatalysisTrends in Biotechnology, 1985
- Chymotrypsin modified with polyethylene glycol catalyzes peptide synthesis reaction in benzeneFEBS Letters, 1984
- Enzymic synthesis of hydrocarbon-soluble peptides with reverse micellesJournal of the American Chemical Society, 1984
- Rules for the regulation of enzyme activity in reserved micelles as illustrated by the conversion of apolar steroids by 20beta-hydroxysteroid dehydrogenaseEuropean Journal of Biochemistry, 1984
- Proteinase‐Catalyzed Synthesis of Peptide BondsPublished by Wiley ,1982
- Synthesis of an aspartame precursor by immobilized thermolysin in an organic solventThe Journal of Organic Chemistry, 1981
- Graphical determination of the dissociation constants for two-substrate enzyme systemsBiochimica et Biophysica Acta, 1957