首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Enzymatic Biotransformation of Balloon Flower Root Saponins into Bioactive Platycodin D by Deglucosylation with Caldicellulosiruptor bescii β-Glucosidase
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Enzymatic Biotransformation of Balloon Flower Root Saponins into Bioactive Platycodin D by Deglucosylation with Caldicellulosiruptor bescii β-Glucosidase

机译:Caldicellulosiruptor besciiβ-葡萄糖苷酶的去糖基化作用将球根花总皂苷酶生物转化为生物活性桔梗D。

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摘要

Platycodin D (PD), a major saponin (platycoside) in Platycodi radix (balloon flower root), has higher pharmacological activity than the other major platycosides; however, its content in the plant root is only approximately 10% (w/w) and the productivities of PD by several enzymes are still too low for industrial applications. To rapidly increase the total PD content, the β-glucosidase from Caldicellulosiruptor bescii was used for the deglucosylation of the PD precursors platycoside E (PE) and platycodin D3 (PD3) in the root extract into PD. Under the optimized reaction conditions, the enzyme completely converted the PD precursors into PD with the highest productivity reported so far, increasing the total PD content to 48% (w/w). In the biotransformation process, the platycosides in Platycodi radix were hydrolyzed by four pathways: deapiosylated (deapi)-PE → deapi-PD3 → deapi-PD, PE → PD3 → PD, polygalacin D3 → polygalacin D, and 3″-O-acetyl polygalacin D3 → 3″-O-acetyl polygalacin D.
机译:Platycodin D(PD)是Platycodi radix(气球花根)中的主要皂苷(platycoside),其药理活性高于其他主要platycosides。但是,其在植物根中的含量仅为约10%(w / w),并且几种酶对PD的生产率对于工业应用而言仍然太低。为了快速增加总PD含量,使用来自Caldicellulosiruptor bescii的β-葡萄糖苷酶将根提取物中的PD前体铂糖苷E(PE)和platycodin D3(PD3)脱糖基化为PD。在优化的反应条件下,该酶将PD前体完全转化为PD,具有迄今为止报道的最高生产率,从而将PD总含量提高到48%(w / w)。在生物转化过程中,桔梗中的片状糖苷通过以下四种途径水解:去脂基化(deapi)-PE→deapi-PD3→deapi-PD,PE→PD3→PD,聚半乳聚糖D3→聚半乳聚糖D和3″ -O-乙酰基聚半乳聚糖D3→3″ -O-乙酰基聚半乳聚糖D。

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