Beijing Advanced Innovation Center for Food Nutrition and Human Health, Beijing Technology & Business University, Beijing 100048, China.
College of Chemistry, Beijing Normal University, Beijing 100875, China.
Molecules. 2023 Jan 29;28(3):1289. doi: 10.3390/molecules28031289.
Paeoniflorin is a glycoside compound found in Pall that is used in traditional herbal medicine and shows various protective effects on the cardio-cerebral vascular system. It has been reported that the pharmacological effects of paeoniflorin might be generated by its metabolites. However, the bioavailability of paeoniflorin by oral administration is low, which greatly limits its clinical application. In this paper, a paeoniflorin-converting enzyme gene (G6046, GenBank accession numbers: OP856858) from (AS 3.970) was identified by comparative analysis between MS analysis and transcriptomics. The expression, purification, enzyme activity, and structure of the conversion products produced by this paeoniflorin-converting enzyme were studied. The optimal conditions for the enzymatic activity were found to be pH 9, 45 °C, resulting in a specific enzyme activity of 14.56 U/mg. The products were separated and purified by high-performance counter-current chromatography (HPCCC). Two main components were isolated and identified, 2-amino-2-p-hydroxymethyl-methyl alcohol-benzoate (tirs-benzoate) and 1-benzoyloxy-2,3-propanediol (1-benzoyloxypropane-2,3-diol), via UPLC-Q-TOF-MS and NMR. Additionally, paeoniflorin demonstrated the ability to metabolize into benzoic acid via G6046 enzyme, which might exert antidepressant effects through the blood-brain barrier into the brain.
芍药苷是从 (AS 3.970)中分离出的一种糖苷化合物,存在于传统草药中,对心脑血管系统具有多种保护作用。据报道,芍药苷的药理作用可能是由其代谢物产生的。然而,口服芍药苷的生物利用度低,这极大地限制了其临床应用。在本文中,通过 MS 分析与转录组学比较分析,鉴定了来自 (AS 3.970)的芍药苷转化酶基因(G6046,GenBank 登录号:OP856858)。研究了该芍药苷转化酶的表达、纯化、酶活性和转化产物的结构。发现酶活性的最佳条件为 pH9、45°C,比酶活为 14.56 U/mg。通过高效逆流色谱(HPCCC)对产物进行分离和纯化。通过 UPLC-Q-TOF-MS 和 NMR 分离和鉴定了两种主要成分,2-氨基-2-对羟甲基-甲醇苯甲酸酯(tirs-苯甲酸酯)和 1-苯甲酰氧基-2,3-丙二醇(1-苯甲酰氧基丙烷-2,3-二醇)。此外,芍药苷通过 G6046 酶代谢为苯甲酸,可能通过血脑屏障进入大脑发挥抗抑郁作用。