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A novel chitosan derivative to immobilize alpha-L-rhamnopyranosidase from Aspergillus niger for application in beverage technologies.

作者信息

Spagna G, Barbagallo R N., Casarini D, Pifferi P G.

机构信息

Food Biotechnology Group from the Department of Horticulture, Floriculture, Arboriculture and Agroindustrial Technology (DOFATA), University of Catania, via S. Sofia 98, 95123, Catania, Italy

出版信息

Enzyme Microb Technol. 2001 Mar 8;28(4-5):427-438. doi: 10.1016/s0141-0229(00)00340-9.

DOI:10.1016/s0141-0229(00)00340-9
PMID:11240202
Abstract

alpha-L-rhamnopyranosidase (Rha, EC 3.2.1.40) is an enzyme of considerable importance to food technology in increasing the aroma of wines, musts, fruit juices and other beverages. The aim of this research is the immobilization of the Rha contained in a commercial preparation already used in the winemaking industry and purified in the manner described in a previous study [1]. The immobilization supports tested were chitin, chitosan and derivatized chitosan, diethylaminoethyl chitosan (DE-chitosan) never previously used for this type of application. Particularly, on DE-chitosan, the Rha was adsorbed and cross-linked with various bifunctional agents (glutaraldehyde, diepoxyoctane, suberimidate and carbodiimide), whose best results (immobilization yields and activity) were obtained with carbodiimide (EDC) that allowed a reduction in the involvement of the enzyme amine groups that are probably important in catalytic mechanism. In addition, the use of rhamnose and a succinimide (NHS) during cross-linking enhanced the action of the EDC and so increased the immobilization yield and activity. The immobilized Rha retained the kinetic parameters (K(m) and V(max)) of the free enzyme and increased stability. Moreover, this biocatalyst allowed an increase in the aroma in a model wine solution containing glicosidic precursors with a marked reduction in specificity toward tertiary monoterpenols as compared to the free enzyme.

摘要

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