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Enzymatic transglycosylation of ginsenoside Rg1 by rice seed alpha-glucosidase

机译:稻种α-葡糖苷酶的人参皂苷RG1的酶促糖基化

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Six -monoglucosyl derivatives of ginsenoside Rg1 (G-Rg1) were synthesized by transglycosylation reaction of rice seed -glucosidase in the reaction mixture containing maltose as a glucosyl donor and G-Rg1 as an acceptor. Their chemical structures were identified by spectroscopic analysis, and the effects of reaction time, pH, and glycosyl donors on transglycosylation reaction were investigated. The results showed that rice seed -glucosidase transfers -glucosyl group from maltose to G-Rg1 by forming either -1,3 (-nigerosyl)-, -1,4 (-maltosyl)-, or -1,6 (-isomaltosyl)-glucosidic linkages in -glucose moieties linked at the C6- and C20-position of protopanaxatriol (PPT)-type aglycone. The optimum pH range for the transglycosylation reaction was between 5.0 and 6.0. Rice seed -glucosidase acted on maltose, soluble starch, and PNP -D-glucopyranoside as glycosyl donors, but not on glucose, sucrose, or trehalose. These -monoglucosyl derivatives of G-Rg1 were easily hydrolyzed to G-Rg1 by rat small intestinal and liver -glucosidase in vitro.
机译:通过米籽泡酰胺酶的常胶质化反应在含有麦芽糖作为葡萄糖族供体和G-RG1作为受体的反应混合物中,通过稻酰基氧化氢酶的六葡聚糖酶(G-RG1)的六个-Monglucosyl衍生物合成。通过光谱分析鉴定了它们的化学结构,研究了反应时间,pH和糖基供体对转基质化反应的影响。结果表明,通过形成-1,3(-Nigerosyl) - ,-1,4(-maltosyl基) - ,或-1,6(-Isomaltosyl) - 在PROPANAXATRIOL(PPT)甘氨酸的C6-和C20的葡萄糖部分中的葡葡萄糖部分 - 葡萄糖。转蛋白化反应的最佳pH范围在5.0和6.0之间。米种子 - 葡糖苷酶作用于麦芽糖,可溶性淀粉和PNP-D-吡喃吡喃糖苷,作为糖基供体,但不是葡萄糖,蔗糖或海藻糖。通过大鼠小肠和肝脏 - 葡糖苷酶在体外容易地将G-RG1的聚葡萄糖衍生物易于水解成G-RG1。

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