Department of Agro-Food Resources, National Institute of Agricultural Sciences, Rural Development Administration, Jeonju, 55365, Republic of Korea.
Department of Agro-Food Resources, National Institute of Agricultural Sciences, Rural Development Administration, Jeonju, 55365, Republic of Korea.
Enzyme Microb Technol. 2021 Jun;147:109788. doi: 10.1016/j.enzmictec.2021.109788. Epub 2021 Mar 24.
Isomaltooligosaccharide (IMO), considered to be a prebiotic, reportedly has health effects, particularly in terms of digestion; however, the prebiotic effects of IMOs depend largely on the degree of polymerization. Currently, IMOs are commercially produced using transglucosidase (TG) derived from Aspergillus niger. Here, we report a novel Thermoanaerobacter thermocopriae-derived TG (TtTG) that can produce long-chain IMOs (L-IMOs) using maltodextrin as the main substrate. A putative carbohydrate-binding gene comprising carbohydrate-binding module 35 and glycoside hydrolase family 15 domain was cloned and successfully overexpressed in Escherichia coli BL21 (DE3) cells. The resulting purified recombinant enzyme (TtTG) had a molecular mass of 94 kDa. TtTG displayed an optimal pH of 4.0 (higher than that of commercial TG) and an optimal temperature of 60 °C (same as that of commercial TG). TtTG also enabled the synthesis of oligosaccharides using various saccharides, such as palatinose, kojibiose, sophorose, maltose, cellobiose, isomaltose, gentiobiose, and trehalose, which acted as specific acceptors. TtTG could also produce a medium-sized L-IMO, different from that by dextran-dextrinase and TG, from maltodextrin, as the sole substrate. Thus, the novel combination of maltodextrin and TtTG shows potential as an effective method for commercially producing L-IMOs with improved prebiotic effects.
异麦芽低聚糖(IMO)被认为是一种益生元,据称具有健康益处,特别是在消化方面;然而,IMO 的益生元作用在很大程度上取决于聚合度。目前,IMO 是通过黑曲霉来源的转葡糖苷酶(TG)商业化生产的。在这里,我们报告了一种新型的 Thermoanaerobacter thermocopriae 衍生的 TG(TtTG),它可以使用麦芽糊精作为主要底物生产长链 IMO(L-IMO)。克隆并成功在大肠杆菌 BL21(DE3)细胞中过表达了一个包含碳水化合物结合模块 35 和糖苷水解酶家族 15 结构域的假定碳水化合物结合基因。所得纯化的重组酶(TtTG)的分子量为 94 kDa。TtTG 的最适 pH 为 4.0(高于商业 TG),最适温度为 60°C(与商业 TG 相同)。TtTG 还可以使用各种糖,如帕拉atinose、kojibiose、槐糖、麦芽糖、纤维二糖、异麦芽糖、龙胆二糖和海藻糖作为特定的受体来合成寡糖。TtTG 还可以从麦芽糊精作为唯一底物中产生不同于葡聚糖-葡聚糖酶和 TG 的中链 L-IMO。因此,麦芽糊精和 TtTG 的新型组合显示出作为一种有效方法的潜力,用于商业生产具有改善益生元作用的 L-IMO。