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Enhancement of active compound genipin from Gardeniae Fructus using immobilized glycosyl hydrolase family 3 β-glucosidase from Lactobacillus antri

机译:利用固定化的抗乳杆菌糖基水解酶家族3β-葡萄糖苷酶增强Garden子活性成分genipin

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摘要

Geniposide is an iridoid glycoside, which is abundant in Gardeniae Fructus. Despite the various pharmaceutical effects of geniposide on a human body, its hydrolysis into a smaller molecule, genipin, by β-glucosidase produced by bacteria in the intestines is particularly important to improve geniposide uptake into the body. Since geniposide is much more abundant in Gardeniae Fructus than its aglycone genipin, we herein transformed geniposide into genipin using purified recombinant β-glucosidase from Lactobacillus antri (rBGLa), which was expressed in Escherichia coli to enhance the genipin content. Purified rBGLa was characterized using p-nitrophenyl β-d-glucopyranoside, and the optimal temperature and pH for its β-glucosidase activity were found to be 45 °C and 6.0. When the enzyme was immobilized, rBGLa was active at higher temperatures than the free enzyme, and we confirmed that its stability upon changes in pH and temperature was highly improved. Using 0.5 μg/mL free rBGLa, single compound of 0.4 mM geniposide was efficiently converted into genipin within 2 h, and the immobilized rBGLa also successfully transformed geniposide in a hot-water extract of Gardeniae Fructus into the aglycone, which makes it applicable to the food and pharmaceutical industries.
机译:ip子苷是一种鸢尾糖苷,在Garden子中含量丰富。尽管子苷对人体具有多种药物作用,但是通过肠内细菌产生的β-葡萄糖苷酶将its子苷水解为较小分子的genipin对于改善子苷对人体的吸收尤为重要。由于子中的子苷比其糖苷配基的泛素要丰富得多,因此我们在本文中使用了来自抗乳杆菌的重组β-葡萄糖苷酶(rBGLa)将子苷转化为京尼平,该酶在大肠杆菌中表达,可提高Genipin的含量。使用对硝基苯基β-d-吡喃葡萄糖苷对纯化的rBGLa进行表征,发现其β-葡萄糖苷酶活性的最佳温度和pH为45°C和6.0。当固定化酶时,rBGLa在比游离酶更高的温度下具有活性,我们证实其在pH和温度变化时的稳定性得到了极大提高。使用0.5μg/ mL的游离rBGLa,0.4mM ip子苷的单一化合物可在2小时内有效转化为genipin,固定化的rBGLa还成功地将Garden子热水提取物中的子苷转化为糖苷,使其适用于食品和制药工业。

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