非西汀
山奈酚
黄酮醇
槲皮素
枯草芽孢杆菌
化学
生物化学
黄酮类
生物利用度
类黄酮
代谢途径
新陈代谢
药理学
生物
色谱法
抗氧化剂
细菌
遗传学
作者
Che‐Wei Wang,Hsin-Ya Tsai,Chen Hsu,Ching‐Chun Hsieh,I. P. Wang,Chi‐Fon Chang,Nan‐Wei Su
标识
DOI:10.1016/j.foodchem.2023.136975
摘要
Flavonols (3-hydroxy flavones) have been studied for their beneficial bioactivities for human health. Recently, we reported that a flavonoid phosphate synthetase (BsFPS) from Bacillus subtilis BCRC 80517 can transform several flavonoids into their phosphate conjugates, which become more water-soluble and thus increase the oral bioavailability. However, the in vivo metabolism of different flavonols has yet to be determined. Here, we investigated biotransformation of three flavonols (quercetin, kaempferol and fisetin) by B. subtilis BCRC 80517. C-ring cleavage products of quercetin and kaempferol, i.e., 2-protocatechuoyl-phloroglucinol carboxylic acid (2-PCPGCA), were produced, whereas two phosphate derivatives of fisetin (fisetin 4′-O-phosphate and fisetin 3′-O-phosphate) were generated by cultivation with B. subtilis BCRC 80517. Our results indicated that there are structure-specific metabolic pathways in B. subtilis toward different flavonols, where the 5-hydroxy group determines metabolic priority. Our findings provide new insights for developing bioproduction platform to produce flavonol phosphate derivatives for nutraceutical applications.
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