Kometani T, Nishimura T, Nakae T, Takii H, Okada S
Biochemical Research Laboratory, Ezaki Glico Co., Ltd., Osaka, Japan.
Biosci Biotechnol Biochem. 1996 Apr;60(4):645-9. doi: 10.1271/bbb.60.645.
Cyclodextrin glucanotransferase from an alkalophilic Bacillus species produced neohesperidin monoglucoside and a series of its maltooligoglucosides by transglycosylation with neohesperidin as an acceptor and soluble starch as a donor. As the reaction using beta-CD as a donor at an alkaline pH was very effective for solubilizing neohesperidin, the amount of glycosides formed was increased. As a result, its amount with beta-CD at pH 10 was about 7 times greater than that with soluble starch at pH 5. Neohesperidin monoglucoside was purified from the reaction mixture by glucoamylase and naringinase treatments, an Amberlite XAD-16 column, a Sephadex LH20 column, and HPLC on an ODS column. The structure of the purified monoglucoside was identified as 3G-alpha-D-glucopyranosyl neohesperidin by FAB-MS, methylation analysis, and 1H- and 13C-NMR. The solubility of neohesperidin monoglucoside in water was approximately 1500 times higher than that of neohesperidin, and the bitterness of the monoglucoside was about 10 times less than that of neophesperidin. In addition, naringin was also glycosylated by the same method as neohesperidin, and its monoglucoside was identified as 3G-alpha-D-glucopyranosyl naringin. The solubility of naringin monoglucoside in water was also at least 1000 times higher than that of naringin without altering its bitterness.
嗜碱芽孢杆菌属的环糊精葡糖基转移酶以新橙皮苷为受体、可溶性淀粉为供体,通过转糖基作用产生了新橙皮苷单葡萄糖苷及其一系列麦芽低聚糖苷。由于在碱性pH条件下以β-环糊精作为供体的反应对增溶新橙皮苷非常有效,所以形成的糖苷量增加。结果,在pH 10时其与β-环糊精反应形成的量约为在pH 5时与可溶性淀粉反应形成量的7倍。通过糖化酶和柚皮苷酶处理、Amberlite XAD - 16柱、Sephadex LH20柱以及ODS柱上的高效液相色谱法从反应混合物中纯化出新橙皮苷单葡萄糖苷。通过快原子轰击质谱(FAB - MS)、甲基化分析以及1H - 和13C - 核磁共振确定纯化的单葡萄糖苷的结构为3G - α - D - 吡喃葡萄糖基新橙皮苷。新橙皮苷单葡萄糖苷在水中的溶解度比新橙皮苷高约1500倍,并且该单葡萄糖苷的苦味比新橙皮苷小约10倍。此外,柚皮苷也通过与新橙皮苷相同的方法进行糖基化,其单葡萄糖苷被鉴定为3G - α - D - 吡喃葡萄糖基柚皮苷。柚皮苷单葡萄糖苷在水中的溶解度也比柚皮苷至少高1000倍,且不改变其苦味。