铁力木花蕾中黄酮类化学成分及其CYP1家族酶抑制活性研究

Flavonoids from the flower buds of Mesua ferrea Linn with CYP1 enzymes inhibitory activity

  • 摘要: 综合应用正相硅胶柱层析、Sephadex LH-20凝胶柱色谱、ODS柱色谱、半制备HPLC等多种分离手段对铁力木(Mesua ferrea Linn)花蕾95%乙醇提取物进行分离纯化,运用 NMR波谱和MS技术鉴定结构,共分离鉴定出25 个黄酮类化合物,分别为芹菜素 (1)、木犀草素 (2)、金圣草黄素 (3)、异牡荆苷 (4)、牡荆苷 (5)、luteolin-3′-O-β-xylopyranoside (6)、山柰酚 (7)、槲皮素 (8)、槲皮素吡喃鼠李糖苷 (9)、quercetin 3-O-β-D-glucoside (10)、kaempferol 3-O-α-rhamnopyranoside (11)、aromadendrin (12)、rhusflavone (13)、rhusflavanone (14)、2,5-dihydroxyxanthone (15)、5-hydroxy-1-methoxyxanthone (16)、2,5-dihydroxy-1-methoxylxanthone (17)、5-hydroxy-1,3-dimethoxyxanthone (18)、1,3,5-trihydroxyxanthone (19)、2-hydroxyxanthone (20)、4-hydroxyxanthone (21)、1,7-dihydroxyxanthone (22)、1,3,7-trihydroxyxanthone (23)、1,5,6-trihydroxyxanthone (24)和5,6-dihydroxy-1-methoxyxanthone (25). 化合物 37101215222325为首次从该植物中分离得到. 此外,对化合物1~57~1315进行了CYP1A1/CYP1A2/CYP1B1酶活性抑制实验,结果表明,化合物4能靶向作用于CYP1A1酶,抑制率为(28.40±8.83)%;化合物12能靶向作用于CYP1A2酶,抑制率为(44.15±2.16)%;化合物1113能靶向作用于CYP1B1酶,抑制率分别为(90.52±2.79)% 和(75.72±26.78)%;分子对接技术发现化合物411~13能够通过氢键与CYP1家族相应受体蛋白酶有较好的结合,结合能均小于−34.00 kJ/mol.

     

    Abstract: The chemical constituents of the 95% ethanol extract from Mesua ferrea Linn were isolated and purified by silica gel, Sephadex LH-20, open ODS, semi preparative HPLC column chromatography and other separation methods. The structure of the compounds were elucidated by NMR spectroscopy and MS data. 25 flavonoid compounds were isolated and identified, including apigenin (1), luteolin (2), chrysoeriol (3), isovitexin (4), vitexin (5), luteolin-3′-O-β-xylopyranoside (6), kaempferol (7), quercetin (8), quercetin-3-O-rhamnoside (9), quercetin-3-O-β-D-glucoside (10), kaempferol-3-O-α-rhamnopyranoside (11), aromadendrin (12), rhusflavone (13), rhusflavanone (14), 2,5-dihydroxyxanthone (15), 5-hydroxy-1-methoxy xanthone (16), 2,5-dihydroxy-1-methoxylxanthone (17), 5-hydroxy-1,3-dimethoxyxanthone (18), 1,3,5-trihydroxyxanthone (19), 2-hydroxyxanthone (20), 4-hydroxyxanthone (21), 1,7-dihydroxyxanthone (22), 1,3,7-trihydroxyxanthone (23), 1,5,6-trihydroxyxanthone (24), 5,6-dihydroxy-1-methoxyxanthone (25). Compounds 3, 7, 10, 12, 15, 22, 23 and 25 were isolated from this plant for the first time. In addition, CYP1A1/CYP1A2/CYP1B1 enzyme activity inhibition assay was performed on compounds 15, 713 and 15, and the results showed that compound 4 could target CYP1A1 enzyme with an inhibition rate of (28.40±8.83)%; compound 12 could target CYP1A2 enzyme with an inhibition rate of (44.15±2.16)%; Compounds 11 and 13 were able to target the CYP1B1 enzyme with inhibition rates of (90.52±2.79)% and (75.72±26.78)%, respectively. Molecular docking techniques revealed that compounds 4, 1113 were able to bind well to the corresponding receptor proteases of the CYP1 family through hydrogen bonding, with binding energies less than −34.00 kJ/mol.

     

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