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V Schellenberger

Publications and source records attributed to V Schellenberger.

25 records · Page 2Linked to original sources

Characterization of the S'-subsite specificity of bovine pancreatic alpha-chymotrypsin via acyl transfer to added nucleophiles.

The S'-subsite specificity of bovine pancreatic alpha-chymotrypsin was investigated by acyl transfer reactions using a series of amino-acid- and peptide-derived nucleophiles. The nucleophilic efficiency covers a range of more than three orders of magnitude, reflecting the specificity of the acyl transfer process. Positively charged H-Arg-NH2 was the most efficient nucleophile of the series while peptides with free carboxyl groups show poor nucleophilic behaviour. This is explained by electrostatic interactions with the residues Asp35 and Asp64 of the enzyme. These negatively charged groups, which are localized near the appropriate S' binding sites, repel carboxylate groups of the nucleophiles. There is a good correlation between the nucleophile efficiencies found for different acyl enzymes. An investigation of a series of 14 water-soluble acyl donor esters, differing both in the P1 residue and in the number of amino acids, revealed that the nature of the acyl group affected the acyl-enzyme partitioning between water and added nucleophile in the range of one order of magnitude.

Acylation↗

Synthesis and kinetic characterisation of omega-guanidinocarbonic acid ethyl esters as trypsin substrates.

Aliphatic omega-guanidinocarbonic acid ethyl esters of different chain length (C3-C6) were synthesized and characterized as 4-toluenesulfonates. The kinetic parameters of the trypsin-catalyzed hydrolysis indicate that the ethyl ester of delta-guanidinovaleric acid is the most effective substrate in this series. The Km value of this compound is in the same order of magnitude as those of arginine-containing ester substrates like N alpha-benzoylarginine ethyl ester (BAEE). However, kcat is decreased by approximately two orders of magnitude.

Amino Acids, Dicarboxylic↗

Characterization of the S'-subsite specificity of porcine pancreatic elastase.

A number of maleyl peptide p-nitrobenzyl esters have been synthesized to study elastase-catalyzed hydrolysis reactions. These new substrates were used as acyl donors to investigate the S'-subsite specificity of porcine pancreatic elastase by partitioning of the acyl enzyme between various added nucleophiles and water. The following results were obtained. 1. Porcine pancreatic elastase prefers amino acid residues with small side chains in the P'1 position. 2. The nucleophile binding is improved by a positively charged P'1 side chain, whereas a negatively charged function results in a very low binding tendency. 3. Elongation of the nucleophile to the P'2 position leads to higher aminolysis rates. 4. S' specificity is substantially influenced by the P1 residue of the acyl enzyme.

Acylation↗

An apparatus for continuous analysis of protease-catalyzed acyl transfer reactions.

An apparatus that allows continuous analysis of protease-catalyzed acyl transfer reactions is described. Hydrolysis reaction is assayed using automatic titration. A continuous determination of amino group concentration by reaction with o-phthalaldehyde gives the rate of peptide bond formation. The apparatus allows the determination of the partition constant for the nucleophile at various nucleophile concentrations from one run.

Acyltransferases↗

A spectrophotometric assay for the characterization of the S' subsite specificity of alpha-chymotrypsin.

The partitioning of maleylphenylalanine-alpha-chymotrypsin formed using maleylphenylalanine methyl ester as acyl donor between amino acid-derived nucleophiles and water was determined spectrophotometrically. The interpretation of the results obtained from graphical analysis gave evidence of a high conformational specificity of alpha-chymotrypsin towards basic amino acid derivatives in the P'1 position including significant differences between the amide and methyl ester of arginine. Amides of neutral amino acids with large side-chains show higher nucleophile reactivity in comparison with glycine amide.

Animals↗

Protease-catalyzed peptide synthesis: prevention of side reactions in kinetically controlled reactions.

One major problem in protease-catalyzed peptide synthesis is the occurrence of unwanted proteolytic side reactions. The objective of this study was to demonstrate that specific acyl donor esters can efficiently prevent the enzymatic hydrolysis of the peptide product. As a model system, we have studied the alpha-chymotrypsin-catalyzed synthesis of peptides which are specific chromogenic substrates for this enzyme. The leaving group of the carboxyl component was shown to be of major influence on this process. The accumulating protease-labile peptide product can be protected against enzyme action by a sufficient concentration of a specific acyl donor ester. The parameter alpha 1 that gives the ratio of second-order rate constants for the enzymatic hydrolysis of the peptide product and the acyl donor plays a key role in the synthesis of protease-labile peptides. We could establish that highly protease-labile peptides can be enzymatically synthesized in a homogeneous phase.

Acylation↗

Screening of synthetic peptide libraries with radiolabeled acceptor molecules.

A method has been developed for the identification of specific acceptor molecule-binding sequences from a chemically synthesized peptide library. The peptide resin beads, each bead carrying one peptide sequence, are incubated with radiolabeled acceptor molecule and subsequently immobilized in a thin layer of agarose. Resin beads that carry acceptor molecule-specific sequences are identified by autoradiography and subjected to automated gas-phase sequencing. The method was tested by screening a synthetic pentapeptide library with an anti-beta-endorphin monoclonal antibody.

Amino Acid Sequence↗