Title of article :
Designing enzymatic kyotorphin synthesis in organic media with low water content
Author/Authors :
Vladislav Yu Levitsky، نويسنده , , Pedro Lozano، نويسنده , , José L Iborra، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2000
Pages :
6
From page :
608
To page :
613
Abstract :
Design of enzymatic kyotorphin synthesis in low water media has been carried out as a function of enzyme nature, the immobilization support material and the reaction medium, by using N-benzoyl-l-tyrosine ethyl ester and l-argininamide as substrates. Native and chemically-glycated α-chymotrypsin deposited on supports with different degrees of aquaphilicity (celite, polypropylene PP, and polyamide PA6) were used as catalysts. Binary organic solvent systems of ethanol and different water-immiscible organic cosolvents (ethylacetate, tert-butanol, chloroform, toluene, n-hexane, and n-octane) were studied as reaction media at constant water content (3% v/v). The greater the water binding affinity of the support the lower the synthetic activity of deposited enzymes: the activity of the celite derivative was 4× greater than the polyamide derivative. The enzyme glycation process hardly modified the catalytic ability of the celite derivative, but resulted in a moderate increase in operational stability. The presence of hydrophobic organic cosolvents in the water/ethanol reaction medium significantly increased enzyme activity, whereas the selectivity of the reaction remained high. Hexane was shown to be the best cosolvent, the synthetic activity of the celite derivative in hexane-ethanol (77 : 20%, v/v) being 130× greater than that in 97% (v/v) ethanol.
Keywords :
Peptide synthesis , Kyotorphin , Organic solvents , Glycated enzymes , Non-conventional media , Low-water systems
Journal title :
Enzyme and Microbial Technology
Serial Year :
2000
Journal title :
Enzyme and Microbial Technology
Record number :
1173204
Link To Document :
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