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利用乳糖酵母β-半乳糖苷酶生产半乳糖寡糖:透性细胞与可溶性酶的比较分析。

Production of Galacto-oligosaccharides by the β-Galactosidase from Kluyveromyces lactis : comparative analysis of permeabilized cells versus soluble enzyme.

机构信息

Departamento de Biocatálisis, Instituto de Catálisis y Petroleoquímica, CSIC , 28049 Madrid, Spain.

出版信息

J Agric Food Chem. 2011 Oct 12;59(19):10477-84. doi: 10.1021/jf2022012. Epub 2011 Sep 8.

Abstract

The transgalactosylation activity of Kluyveromyces lactis cells was studied in detail. Cells were permeabilized with ethanol and further lyophilized to facilitate the transit of substrates and products. The resulting biocatalyst was assayed for the synthesis of galacto-oligosaccharides (GOS) and compared with two soluble β-galactosidases from K. lactis (Lactozym 3000 L HP G and Maxilact LGX 5000). Using 400 g/L lactose, the maximum GOS yield, measured by HPAEC-PAD analysis, was 177 g/L (44% w/w of total carbohydrates). The major products synthesized were the disaccharides 6-galactobiose [Gal-β(1→6)-Gal] and allolactose [Gal-β(1→6)-Glc], as well as the trisaccharide 6-galactosyl-lactose [Gal-β(1→6)-Gal-β(1→4)-Glc], which was characterized by MS and 2D NMR. Structural characterization of another synthesized disaccharide, Gal-β(1→3)-Glc, was carried out. GOS yield obtained with soluble β-galactosidases was slightly lower (160 g/L for Lactozym 3000 L HP G and 154 g/L for Maxilact LGX 5000); however, the typical profile with a maximum GOS concentration followed by partial hydrolysis of the newly formed oligosaccharides was not observed with the soluble enzymes. Results were correlated with the higher stability of β-galactosidase when permeabilized whole cells were used.

摘要

详细研究了乳糖克鲁维酵母细胞的转半乳糖基化活性。用乙醇对细胞进行渗透处理,然后冻干,以促进底物和产物的传递。然后对所得生物催化剂进行半乳糖低聚糖(GOS)的合成测定,并与来自乳糖克鲁维酵母的两种可溶性β-半乳糖苷酶(Lactozym 3000 L HP G 和 Maxilact LGX 5000)进行比较。使用 400 g/L 乳糖,通过 HPAEC-PAD 分析测定,GOS 的最大产量为 177 g/L(总碳水化合物的 44%w/w)。合成的主要产物是二糖 6-半乳糖二糖[Gal-β(1→6)-Gal]和别乳糖[Gal-β(1→6)-Glc],以及三糖 6-半乳糖基乳糖[Gal-β(1→6)-Gal-β(1→4)-Glc],其通过 MS 和 2D NMR 进行了表征。另一种合成二糖 Gal-β(1→3)-Glc 的结构特征也进行了研究。可溶性β-半乳糖苷酶的 GOS 产量略低(Lactozym 3000 L HP G 为 160 g/L,Maxilact LGX 5000 为 154 g/L);然而,用可溶性酶没有观察到典型的 GOS 浓度最大,然后新形成的低聚糖部分水解的模式。结果与使用渗透完整细胞时β-半乳糖苷酶更高的稳定性相关。

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