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益生元低聚糖的酶促合成

Enzymatic synthesis of prebiotic oligosaccharides.

作者信息

Rabelo Maria C, Honorato Talita L, Gonçalves Luciana R B, Pinto Gustavo A S, Rodrigues Sueli

机构信息

Departamento de Tecnologia de Alimentos, Universidade Federal do Ceara, Av. Mister Hull, 2977, bloco 858, Campus do Pici, CEP 60356-000 Fortaleza, CE, Brazil.

出版信息

Appl Biochem Biotechnol. 2006 Apr;133(1):31-40. doi: 10.1385/abab:133:1:31.

Abstract

Prebiotic oligosaccharides are nondigestible carbohydrates that can be obtained by enzymatic synthesis. Glucosyltransferases can be used to produce these carbohydrates through an acceptor reaction synthesis. When maltose is the acceptor a trisaccharide composed of one maltose unit and one glucose unit linked by an alpha-1,6-glycosidic bond (panose) is obtained as the primer product of the dextransucrase acceptor reaction. In this work, panose enzymatic synthesis was evaluated by a central composite experimental design in which maltose and sucrose concentration were varied in a wide range of maltose/sucrose ratios in a batch reactor system. A partially purified enzyme was used in order to reduce the process costs, because enzyme purification is one of the most expensive steps in enzymatic synthesis. Even using high maltose/sucrose ratios, dextran and higher-oligosaccharide formation were not avoided. The results showed that intermediate concentrations of sucrose and high maltose concentration resulted in high panose productivity with low dextran and higher-oligosaccharide productivity.

摘要

益生元寡糖是一类不可消化的碳水化合物,可通过酶促合成获得。葡糖基转移酶可用于通过受体反应合成来生产这些碳水化合物。当麦芽糖作为受体时,可获得由一个麦芽糖单元和一个通过α-1,6-糖苷键连接的葡萄糖单元组成的三糖(潘糖),作为葡聚糖蔗糖酶受体反应的初级产物。在这项工作中,通过中心复合实验设计评估了潘糖的酶促合成,在间歇反应器系统中,麦芽糖和蔗糖浓度在广泛的麦芽糖/蔗糖比例范围内变化。使用部分纯化的酶以降低工艺成本,因为酶纯化是酶促合成中最昂贵的步骤之一。即使使用高麦芽糖/蔗糖比例,也无法避免葡聚糖和高聚糖的形成。结果表明,中等浓度的蔗糖和高浓度的麦芽糖可实现高潘糖生产率,同时葡聚糖和高聚糖的生产率较低。

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