State Key Laboratory of Food Science and Technology, Jiangnan University, 1800 Lihu Avenue, Wuxi, 214122, China.
School of Biotechnology and Key Laboratory of Industrial Biotechnology, Ministry of Education, Jiangnan University, 1800 Lihu Avenue, Wuxi, 214122, China.
Microb Cell Fact. 2018 Feb 15;17(1):23. doi: 10.1186/s12934-017-0842-2.
Kojibiose as a prebiotic and inhibitor of α-glucosidase exhibits potential for a wide range of applications in the food and medicine fields; however, large-scale separation and extraction of kojibiose from nature is difficult. Sucrose phosphorylase (SPase) can be used for the production of kojibiose, and currently, SPase is only heterologously expressed in E. coli, making it unsuitable for use in the food industry. However, Bacillus subtilis is generally considered to be a safe organism potentially useful for SPase expression.
Here, for the first time, we heterologously expressed Bifidobacterium adolescentis SPase in a food-grade B. subtilis strain. The results showed that SPase was efficiently secreted into the extracellular medium in the absence of a signal peptide. After culturing the recombinant strain in a 3-L bioreactor, crude SPase yield and activity reached 7.5 g/L and 5.3 U/mL, respectively, the highest levels reported to date. The optimal reaction conditions for kojibiose synthesis catalyzed by recombinant SPase were as follows: 0.5 M sucrose, 0.5 M glucose, 0.02 U/mg, pH 7.0, 50 °C, and 30 h. Furthermore, the substrate-conversion rate reached 40.01%, with kojibiose accounting for 104.45 g/L and selectivity for kojibiose production at 97%.
Here, we successfully expressed SPase in B. subtilis in the absence of a signal peptide and demonstrated its secretion into the extracellular medium. Our results indicated high levels of recombinant enzyme expression, with a substrate-conversion rate of 40.01%. These results provide a basis for large-scale preparation of kojibiose by the recombinant SPase.
低聚异麦芽糖作为一种益生元和α-葡萄糖苷酶抑制剂,在食品和医药领域具有广泛的应用潜力;然而,从自然界中大规模分离和提取低聚异麦芽糖是困难的。蔗糖磷酸化酶(SPase)可用于生产低聚异麦芽糖,目前 SPase 仅在大肠杆菌中异源表达,因此不适合在食品工业中使用。然而,枯草芽孢杆菌通常被认为是一种安全的生物体,可能对 SPase 的表达有用。
在这里,我们首次在食品级枯草芽孢杆菌中异源表达了青春双歧杆菌 SPase。结果表明,在没有信号肽的情况下,SPase 被有效地分泌到细胞外培养基中。在 3-L 生物反应器中培养重组菌株后,粗 SPase 产量和活性分别达到 7.5 g/L 和 5.3 U/mL,这是迄今为止报道的最高水平。重组 SPase 催化合成低聚异麦芽糖的最佳反应条件为:0.5 M 蔗糖、0.5 M 葡萄糖、0.02 U/mg、pH7.0、50°C 和 30 h。此外,底物转化率达到 40.01%,低聚异麦芽糖含量为 104.45 g/L,低聚异麦芽糖选择性为 97%。
在这里,我们成功地在枯草芽孢杆菌中表达了无信号肽的 SPase,并证明了其分泌到细胞外培养基中。我们的结果表明,重组酶的表达水平较高,底物转化率达到 40.01%。这些结果为利用重组 SPase 大规模制备低聚异麦芽糖提供了依据。