α-Chymotrpysin (EC 3.4 21.1) was immobilized by deposition on celite and subsequent cross-linking with glutaraldehyde. The effects of different mixtures of aqueous buffer and acetonitrile on the immobilized preparation were evaluated using a dipeptide synthesis as model reaction. The initial reaction rate at 6-95% of water increased with increasing water content. The maximum yield of peptide had two maxima; the first one at 6% of water (92%) and the second one at 80% of water (39%). The presence of two maxima was due to severe enzyme inactivation at intermediate water contents (50-60%). The immobilisation procedure slowed the inactivation of α-chymotrypsin. Cross-linked enzyme was inactivated to a lesser extent than both free enzyme and enz...
A depeptide synthesis was drastically influenced by the reaction temperature, in the range from −30°...
αChymotrypsin was modified with cyanuric chloride activated monomethoxypolyethylene glycol (MPEG) wi...
The influence of eight different N-terminal protecting groups (For, Ac, Boc, Fmoc, Mal, Pheac, Aloc ...
Protease‐catalyzed peptide synthesis in acetonitrile water mixtures, containing 0–90% water, was inv...
Peptide synthesis was carried out in a variety of organic solvents with low contents of water. The e...
α-Chymotrypsin was deposited on Celite and the resulting immobilized preparations were used to carry...
α-Chymotrypsin was deposited on Celite and the resulting immobilized preparations were used to carry...
α-Chymotrypsin deposited on Celite was used to catalyse peptide synthesis reactions between N-protec...
The usefulness of different reaction systems for enzymatic peptide synthesis was evaluated by studyi...
The effects of 18-crown-6 on the synthesis of peptides catalyzed by α-chymotrypsin are reported. Lyo...
The reaction kinetics of αchymotrypsin (EC 3.4.21.1.) catalyzed esterification of N-protected phenyl...
Enzymes have been found to be catalytically active in organic solvents. Chymotrypsin was used to syn...
The progress of enzymatic peptide synthesis catalyzed by α-chymotrypsin and subtilisin from Bacillus...
The progress of enzymatic peptide synthesis catalyzed by α-chymotrypsin and subtilisin from Bacillus...
A novel total enzymatic synthesis of [Leu]- and [Met]-enkephalin derivatives was accomplished in low...
A depeptide synthesis was drastically influenced by the reaction temperature, in the range from −30°...
αChymotrypsin was modified with cyanuric chloride activated monomethoxypolyethylene glycol (MPEG) wi...
The influence of eight different N-terminal protecting groups (For, Ac, Boc, Fmoc, Mal, Pheac, Aloc ...
Protease‐catalyzed peptide synthesis in acetonitrile water mixtures, containing 0–90% water, was inv...
Peptide synthesis was carried out in a variety of organic solvents with low contents of water. The e...
α-Chymotrypsin was deposited on Celite and the resulting immobilized preparations were used to carry...
α-Chymotrypsin was deposited on Celite and the resulting immobilized preparations were used to carry...
α-Chymotrypsin deposited on Celite was used to catalyse peptide synthesis reactions between N-protec...
The usefulness of different reaction systems for enzymatic peptide synthesis was evaluated by studyi...
The effects of 18-crown-6 on the synthesis of peptides catalyzed by α-chymotrypsin are reported. Lyo...
The reaction kinetics of αchymotrypsin (EC 3.4.21.1.) catalyzed esterification of N-protected phenyl...
Enzymes have been found to be catalytically active in organic solvents. Chymotrypsin was used to syn...
The progress of enzymatic peptide synthesis catalyzed by α-chymotrypsin and subtilisin from Bacillus...
The progress of enzymatic peptide synthesis catalyzed by α-chymotrypsin and subtilisin from Bacillus...
A novel total enzymatic synthesis of [Leu]- and [Met]-enkephalin derivatives was accomplished in low...
A depeptide synthesis was drastically influenced by the reaction temperature, in the range from −30°...
αChymotrypsin was modified with cyanuric chloride activated monomethoxypolyethylene glycol (MPEG) wi...
The influence of eight different N-terminal protecting groups (For, Ac, Boc, Fmoc, Mal, Pheac, Aloc ...