Jilin Ginseng Academy, Changchun University of Chinese Medicine, Changchun 130117, China.
Department of Clinical Laboratory, Affiliated Hospital of Changchun University of Chinese Medicine, Changchun 130117, China.
Molecules. 2022 Jun 25;27(13):4094. doi: 10.3390/molecules27134094.
Biotransformation of specific saponins in the valuable medical plants to increase their bioavailability and pharmaceutical activities has attracted more and more attention. A gene encoding a thermophilic glycoside hydrolase from DSM9078 was cloned and expressed in . The purified recombinant enzyme, exhibiting endoglucanase cellulase activity, was used to transform gypenoside XLIX into gylongiposide I via highly selective and efficient hydrolysis of the glucose moiety linked to the C21 position in gypenoside XLIX. Under the optimal reaction conditions for large scale production of gylongiposide I, 35 g gypenoside XLIX was transformed by using 20 g crude enzyme at pH 6.0 and 80 °C for 4 h with a molar yield of 100%. Finally, 11.51 g of gylongiposide I was purified using a silica gel column with 91.84% chromatographic purity. Furthermore, inhibitory activities of gypenoside XLIX and gylongiposide I against Enterovirus 71 (EV71) were investigated. Importantly, the EC of gypenoside XLIX and gylongiposide I calculated from viral titers in supernatants was 3.53 μM and 1.53 μM, respectively. Moreover, the transformed product gylongiposide I has better anti-EV71 activity than the glycosylated precursor. In conclusion, this enzymatic method would be useful in the large-scale production of gylongiposide I, which would be a novel potent anti-EV71 candidate.
特定皂苷在有价值药用植物中的生物转化,以提高其生物利用度和药物活性,越来越受到关注。从 DSM9078 中克隆并表达了一种编码嗜热糖苷水解酶的基因。纯化的重组酶具有内切葡聚糖酶纤维素酶活性,用于通过对连接到 gypenoside XLIX 上的 C21 位的葡萄糖部分进行高度选择性和高效水解,将 gypenoside XLIX 转化为 gylongiposide I。在大规模生产 gylongiposide I 的最佳反应条件下,在 pH6.0 和 80°C 下使用 20g 粗酶转化 35g gypenoside XLIX,4h 后摩尔产率为 100%。最后,使用硅胶柱层析法,以 91.84%的色谱纯度纯化 11.51g gylongiposide I。此外,还研究了 gypenoside XLIX 和 gylongiposide I 对肠道病毒 71(EV71)的抑制活性。重要的是,从上清液中病毒滴度计算出 gypenoside XLIX 和 gylongiposide I 的 EC 分别为 3.53μM 和 1.53μM。此外,转化产物 gylongiposide I 比糖基化前体具有更好的抗 EV71 活性。总之,这种酶法在 gylongiposide I 的大规模生产中很有用,它可能成为一种新型有效的抗 EV71 候选药物。